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WoS SCOPUS Document Type Document Title Abstract Authors Affiliation ResearcherID (WoS) AuthorsID (SCOPUS) Author Email(s) Journal Name JCR Abbreviation ISSN eISSN Volume Issue WoS Edition WoS Category JCR Year IF JCR (%) FWCI FWCI Update Date WoS Citation SCOPUS Citation Keywords (WoS) KeywordsPlus (WoS) Keywords (SCOPUS) KeywordsPlus (SCOPUS) Language Publication Stage Publication Year Publication Date DOI JCR Link DOI Link WOS Link SCOPUS Link
Article Plasma MMP-9, TIMP-1, and TGF-β1 Responses to Exercise-Induced Muscle Injury The purpose of this study was to analyze changes in the levels of matrix metalloproteinase-9 (MMP-9), tissue inhibitor of metalloproteinase-1 (TIMP-1), and transforming growth factor-beta 1 (TGF-beta 1) in response to strength recovery after eccentric exercise in humans. In this study, 16 healthy males participated and were divided into a faster recovery (FR) group (n = 8, >80% of baseline) and a slower recovery (SR) group (n = 8, 0.05). These results suggest that scar tissue formation caused by the pro-fibrotic activity of growth factors such as TGF-beta 1 is a potential cause of delay in strength recovery after exercise-induced muscle injury. Kim, Jooyoung; Lee, Joohyung Kyungpook Natl Univ, Sch Med, Dept Anat, Daegu 41566, South Korea; Kyungpook Natl Univ, Clin Omics Inst, Daegu 41566, South Korea; Kookmin Univ, Coll Phys Educ, Dept Sport Hlth & Rehabil, Seoul 02707, South Korea Lee, Joohyung/AAU-4979-2020 55720240400; 59641050000 hirase1125@hanmail.net;jolee@kookmin.ac.kr; INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH INT J ENV RES PUB HE 1660-4601 17 2 SCIE;SSCI ENVIRONMENTAL SCIENCES;PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH 2020 3.39 23.6 0.2 2025-06-25 8 7 eccentric exercise; muscle injury; scar tissue; strength recovery; transforming growth factor-beta 1 NERVE GROWTH-FACTOR; SKELETAL-MUSCLE; TGF-BETA; MECHANICAL HYPERALGESIA; INCREASED EXPRESSION; ECCENTRIC EXERCISE; MATRIX-METALLOPROTEINASE-9; RECOVERY; INFLAMMATION; DAMAGE Eccentric exercise; Muscle injury; Scar tissue; Strength recovery; Transforming growth factor-β1 Elbow Joint; Exercise; Humans; Male; Matrix Metalloproteinase 9; Muscle Contraction; Muscle, Skeletal; Tissue Inhibitor of Metalloproteinase-1; Transforming Growth Factor beta1; Young Adult; creatine kinase; gelatinase B; tissue inhibitor of metalloproteinase 1; transforming growth factor beta1; gelatinase B; MMP9 protein, human; TIMP1 protein, human; tissue inhibitor of metalloproteinase 1; transforming growth factor beta1; enzyme activity; injury; muscle; adult; Article; clinical article; controlled study; eccentric muscle contraction; elbow flexion; enzyme activity; enzyme blood level; exercise; exercise recovery; faster recovery; flexor muscle; human; male; maximal isometric strength; muscle injury; muscle isometric contraction; myalgia; protein function; scar tissue; slower recovery; visual analog scale; young adult; blood; elbow; exercise; injury; muscle contraction; physiology; skeletal muscle English 2020 2020-01-02 10.3390/ijerph17020566 바로가기 바로가기 바로가기 바로가기
Article Photoproduction of η mesons off the proton for 1.2 < Eγ < 4.7 GeV using CLAS at Jefferson Laboratory Photoproduction cross sections are reported for the reaction gamma p -> p eta using energy-tagged photons and the CLAS spectrometer at Jefferson Laboratory. The eta mesons are detected in their dominant charged decay mode, eta -> pi(+)pi(-) pi(0), and results on differential cross sections are presented for incident photon energies between 1.2 and 4.7 GeV. These new eta photoproduction data are consistent with earlier CLAS results but extend the energy range beyond the nucleon resonance region into the Regge regime. The normalized angular distributions are also compared with the experimental results from several other experiments, and with predictions of eta-MAID 2018 and the latest solution of the Bonn-Gatchina coupled-channel analysis. Differential cross sections d sigma / dt are presented for incident photon energies E gamma > 2.9 GeV (W > 2.5 GeV), and compared with predictions which are based on Regge trajectories exchange in the t -channel (Regge models). The data confirm the expected dominance of rho, omega vector-meson exchange in an analysis by the Joint Physics Analysis Center. Hu, T.; Akbar, Z.; Crede, V; Adhikari, K. P.; Adhikari, S.; Amaryan, M. J.; Angelini, G.; Asryan, G.; Atac, H.; Gayoso, C. Ayerbe; Barion, L.; Battaglieri, M.; Bedlinskiy, I; Benmokhtar, F.; Bianconi, A.; Biselli, A. S.; Bossu, F.; Boiarinov, S.; Briscoe, W. J.; Brooks, W. K.; Carman, D. S.; Carvajal, J.; Celentano, A.; Chatagnon, P.; Chetry, T.; Ciullo, G.; Clark, L.; Clary, B. A.; Cole, P. L.; Contalbrigo, M.; Cruz-Torres, R.; D'Angelo, A.; Dashyan, N.; De Vita, R.; Defurne, M.; Deur, A.; Diehl, S.; Djalali, C.; Dugger, M.; Dupre, R.; Egiyan, H.; Ehrhart, M.; El Alaoui, A.; El Fassi, L.; Eugenio, P.; Fedotov, G.; Fersch, R.; Filippi, A.; Gavalian, G.; Gilfoyle, G. P.; Girod, F. X.; Glazier, D., I; Golovatch, E.; Gothe, R. W.; Griffioen, K. A.; Guidal, M.; Guo, L.; Hafidi, K.; Hakobyan, H.; Hanretty, C.; Harrison, N.; Hattawy, M.; Hayward, T. B.; Heddle, D.; Hicks, K.; Hobart, A.; Holtrop, M.; Ilieva, Y.; Illari, I.; Ireland, D. G.; Ishkhanov, B. S.; Isupov, E. L.; Jenkins, D.; Jo, H. S.; Joo, K.; Joosten, S.; Keller, D.; Khachatryan, M.; Khanal, A.; Khandaker, M.; Kim, A.; Kim, C. W.; Kim, W.; Klein, F. J.; Kubarovsky, V; Lanza, L.; Leali, M.; Lenisa, P.; Livingston, K.; MacGregor, I. J. D.; Marchand, D.; Markov, N.; Mascagna, V; McCracken, M. E.; McKinnon, B.; Meyer, C. A.; Meziani, Z. E.; Mineeva, T.; Mokeev, V; Movsisyan, A.; Munevar, E.; Camacho, C. Munoz; Nadel-Turonski, P.; Niccolai, S.; Niculescu, G.; O'Connell, T.; Osipenko, M.; Ostrovidov, A., I; Paolone, M.; Pappalardo, L. L.; Paremuzyan, R.; Pasyuk, E.; Phelps, W.; Pogorelko, O.; Poudel, J.; Price, J. W.; Prok, Y.; Protopopescu, D.; Raue, B. A.; Ripani, M.; Ritman, J.; Rizzo, A.; Rosner, G.; Rowley, J.; Sabatie, F.; Salgado, C.; Schmidt, A.; Schumacher, R. A.; Sharabian, Y. G.; Shrestha, U.; Skorodumina, Iu; Sokhan, D.; Soto, O.; Sparveris, N.; Stepanyan, S.; Stoler, P.; Strakovsky, I. I.; Strauch, S.; Tan, J. A.; Tyler, N.; Ungaro, M.; Venturelli, L.; Voskanyan, H.; Voutier, E.; Watts, D. P.; Wei, K.; Wei, X.; Wood, M. H.; Zachariou, N.; Zhang, J.; Zhao, Z. W. Argonne Natl Lab, Argonne, IL 60439 USA; Arizona State Univ, Tempe, AZ 85287 USA; Calif State Univ Dominguez Hills, Carson, CA 90747 USA; Canisius Coll, Buffalo, NY 14208 USA; Carnegie Mellon Univ, Pittsburgh, PA 15213 USA; Catholic Univ Amer, Washington, DC 20064 USA; Univ Paris Saclay, CEA, IRFU, F-91191 Gif Sur Yvette, France; Christopher Newport Univ, Newport News, VA 23606 USA; Univ Connecticut, Storrs, CT 06269 USA; Duke Univ, Durham, NC 27708 USA; Duquesne Univ, Pittsburgh, PA 15282 USA; Fairfield Univ, Fairfield, CT 06824 USA; Univ Ferrara, I-44121 Ferrara, Italy; Florida Int Univ, Miami, FL 33199 USA; Florida State Univ, Tallahassee, FL 32306 USA; George Washington Univ, Washington, DC 20052 USA; Idaho State Univ, Pocatello, ID 83209 USA; Ist Nazl Fis Nucl, Sez Ferrara, I-44100 Ferrara, Italy; Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy; Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy; Ist Nazl Fis Nucl, Sez Roma Tor Vergata, I-00133 Rome, Italy; Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy; Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy; Univ Paris Saclay, IJCLab, CNRS, IN2P3, F-91405 Orsay, France; Inst Kernphys, D-52425 Julich, Germany; James Madison Univ, Harrisonburg, VA 22807 USA; Kyungpook Natl Univ, Daegu 41566, South Korea; Lamar Univ, 4400 MLK Blvd,POB 10009, Beaumont, TX 77710 USA; MIT, 77 Massachusetts Ave, Cambridge, MA 02139 USA; Mississippi State Univ, Mississippi State, MS 39762 USA; Natl Res Ctr, Kurchatov Inst, ITEP, Moscow 117259, Russia; Univ New Hampshire, Durham, NH 03824 USA; Norfolk State Univ, Norfolk, VA 23504 USA; Ohio Univ, Athens, OH 45701 USA; Old Dominion Univ, Norfolk, VA 23529 USA; Rensselaer Polytech Inst, Troy, NY 12180 USA; Univ Richmond, Richmond, VA 23173 USA; Univ Roma Tor Vergata, I-00133 Rome, Italy; Lomonosov Moscow State Univ, Skobeltsyn Inst Nucl Phys, Moscow 119234, Russia; Univ South Carolina, Columbia, SC 29208 USA; Temple Univ, Philadelphia, PA 19122 USA; Thomas Jefferson Natl Accelerator Facil, Newport News, VA 23606 USA; Univ Tecn Federico Santa Maria, Casilla 110-V, Valparaiso, Chile; Univ Insubria, I-22100 Como, Italy; Univ Brescia, I-25123 Brescia, Italy; Univ Glasgow, Glasgow G12 8QQ, Lanark, Scotland; Univ York, York YO10 5DD, N Yorkshire, England; Virginia Tech, Blacksburg, VA 24061 USA; Univ Virginia, Charlottesville, VA 22901 USA; Coll William & Mary, Williamsburg, VA 23187 USA; Yerevan Phys Inst, Yerevan 375036, Armenia Schumacher, Reinhard/K-6455-2013; Zachariou, Nicholas/R-8360-2018; Jo, Hyon-Suk/HGC-7070-2022; Rosner, Guenther/ABB-5516-2021; Khanal, Aaditya/ABI-5610-2020; Ireland, David/E-8618-2010; Bozzi, Giuseppe/H-7283-2017; Ciullo, Giuseppe/X-6539-2018; Mineeva, Taisiya/MDT-1592-2025; Protopopescu, Dan/D-5645-2012; Mascagna, Valerio/HLQ-1103-2023; Dugger, Michael/AAR-5206-2021; Meyer, Curtis/L-3488-2014; Alaoui, Ahmed/B-4638-2015; MacGregor, Ian/D-4072-2011; McKinnon, Bryan/J-2928-2018; Holtrop, Maurik/A-9017-2010; Higinbotham, Douglas/J-9394-2014; Sabatie, Franck/K-9066-2015; Filippi, Alessandra/AAE-9322-2020; Osipenko, Mikhail/N-8292-2015; POUDEL, JIWAN/KQU-6557-2024; Isupov, Evgeny/J-2976-2012; Sparveris, Nikolaos/C-4751-2008; Paolone, Mario/G-3015-2015; Hyde, Charles/W-9190-2018; Deur, Alexandre/H-9778-2019; Lanza, Lucilla/E-6479-2017; Battaglieri, Marco/I-6262-2018; Zhang, Jixie/A-1461-2016; Carvajal, Jaime/O-3681-2014; Celentano, Andrea/JFJ-2728-2023; Hakobyan, Hayk/JUF-6461-2023; Filippi, Alessandra/I-9530-2012; D'Angelo, Annalisa/A-2439-2012; Joosten, Sylvester/HZL-4182-2023; Zhao, Zhi-Wen/HZI-5398-2023; Pappalardo, Luciano/AAB-2380-2021; Brooks, William/C-8636-2013 57221066481; 57220423310; 6602900241; 25823658400; 56258456900; 35277104000; 57193121212; 35277128500; 57210826461; 15755099700; 23033257000; 7004520678; 35277104100; 57218527298; 7102358422; 35227021700; 35725064700; 35277071300; 7005532059; 35400106000; 7005853901; 57214364802; 54392656300; 57202987431; 57189889203; 6603765308; 36022213600; 57202060165; 35227101500; 7003468594; 57201114991; 55828029600; 6507987909; 59345445900; 56272524200; 6604025441; 57217562965; 35374416600; 35227159100; 35069234100; 35227171500; 57193421717; 26535686800; 14041647600; 9845148400; 57215092344; 57216999696; 8695796100; 35227304900; 6603686320; 35227280900; 8258896400; 35227273800; 7102183142; 57217000308; 7003432409; 25948329000; 34570410000; 57208726428; 17433911800; 52863649900; 56115055200; 57206656408; 7003821864; 22966851900; 57214681432; 7005060869; 35227424100; 57214820710; 7006927902; 7006434288; 35227460400; 57237808500; 35227429400; 57202638465; 23034837300; 7102814361; 57193668661; 57208691543; 13405022500; 36604596000; 59817767500; 35227558900; 57214026240; 6701392158; 56047689500; 6507646370; 56273696800; 9278396500; 7006040977; 7004889588; 35227617100; 22135531000; 8226184100; 35227669300; 57672342100; 24500876300; 26023453000; 7004546205; 58474853600; 16241887900; 12244632700; 6603294089; 35227746500; 35227763200; 57197510744; 6701825145; 6603112367; 22986163400; 7004207376; 36085149700; 35227791700; 56362788600; 8903140900; 57200602864; 55329126900; 35227871000; 35227881200; 7004527121; 7003515879; 6701495633; 56589489300; 7102538331; 57214597279; 35227896300; 35228024200; 57212416423; 7201653195; 35227996900; 57213706614; 55834228500; 16065283100; 55787422600; 6507906118; 7004491103; 8331193400; 22969481600; 7004321986; 57200599233; 57203722948; 35228099400; 22136651400; 6504161736; 6603350317; 7201539565; 57221067333; 13204321200; 57201559118; 36836386600; 57215210642; 57216598335 crede@fsu.edu; PHYSICAL REVIEW C PHYS REV C 2469-9985 2469-9993 102 6 SCIE PHYSICS, NUCLEAR 2020 3.296 23.7 0.23 2025-06-25 5 5 BEAM ASYMMETRY; 1ST MEASUREMENT; CROSS-SECTIONS; PHOTON-BEAM; PHOTOPRODUCTION; THRESHOLD; SPECTROMETER; POLARIZATION; HYDROGEN; SIGMA English 2020 2020-12-14 10.1103/physrevc.102.065203 바로가기 바로가기 바로가기 바로가기
Article Charmed hadron production in an improved quark coalescence model We study the production of charmed hadrons D-0 and Lambda(+)(c) in relativistic heavy ion collisions using the charm quark coalescence. Besides taking into consideration changing hadron sizes in a hot dense medium, which results in an enhanced coalescence probability for charm quarks of very low transverse momenta, we also include the collective flow effect on heavier resonances, which leads to a shift of massive charmed resonances to larger transverse momenta. Including the conversion of charm quarks not undergoing coalescence to hadrons by independent fragmentation, we obtain a good description of the measured yield ratio Lambda(+)(c)/D-0 as a function of transverse momentum in Au + Au collisions at root S-NN = 200 GeV by the STAR Collaboration at the Relativistic Heavy Ion Collider. Cho, Sungtae; Sun, Kai-Jia; Ko, Che Ming; Lee, Su Houng; Oh, Yongseok Kangwon Natl Univ, Div Sci Educ, Chunchon 24341, South Korea; Texas A&M Univ, Cyclotron Inst, College Stn, TX 77843 USA; Texas A&M Univ, Dept Phys & Astron, College Stn, TX 77843 USA; Yonsei Univ, Dept Phys, Seoul 03722, South Korea; Yonsei Univ, Inst Phys & Appl Phys, Seoul 03722, South Korea; Kyungpook Natl Univ, Dept Phys, Daegu 41566, South Korea; Asia Pacific Ctr Theoret Phys, Gyeongbuk 37673, South Korea ; Oh, Yongseok/A-2504-2008; Cho, Sung/AAK-3056-2020; Lee, Su/T-1386-2019 57225917689; 55801716100; 7202596780; 17233655500; 7402125873 sungtae.cho@kangwon.ac.kr;kjsun@tamu.edu;ko@comp.tamu.edu;suhoung@yonsei.ac.kr;yohphy@knu.ac.kr; PHYSICAL REVIEW C PHYS REV C 2469-9985 2469-9993 101 2 SCIE PHYSICS, NUCLEAR 2020 3.296 23.7 1.52 2025-06-25 35 35 PLUS AU COLLISIONS; HEAVY FLAVOR; PB COLLISIONS; FLOW English 2020 2020-02-18 10.1103/physrevc.101.024909 바로가기 바로가기 바로가기 바로가기
Article Comparative study of optical and luminescence properties of Sm³⁺ -ions doped Li2O-Gd2O3-PbO-SiO2 and Li2O-GdF3-PbO-SiO2 glasses for orange emission solid state device application 25Li(2)O-05Gd(2)O(3)-15PbO- (55-x) SiO2:x Sm2O3 (LPOSm) and 25Li(2)O-05Gd(2)O(3) - 15PbO - (55-x) SiO2:x Sm2O3 (LPFSm)glasses were prepared by melt quenching method. Optical, luminescence JO-parameters and radiative properties were studied using various techniques. While comparing Omega(2) parameter values between LPOSm05 and LPFSm05, the LPFSm05 glass has more asymmetric environment around Sm3+-ions and more covalency between Sm3+-O bonding then LPOSm05 glass. Moreover, LPFSm05 has higher value of branching ratio than LPOSm05 showing its suitability for laser active medium. The current investigation reveals that value of IR/o-ratio for LPFSm05 is more than LPOSm05 showing its more asymmetric nature and more local disorder for Sm3+-ions than LPOSm05 glass. From evaluated results the CIE-color-coordinates for LPOSm and LPFSm glasses fall in orange region. The calculated value of prepared LPOSm and LPFSm glass are less than warm CCT (<4000 K). The lifetime of (4)G(5/2)state at lambda(ext) = 402 nm and lambda(emi) = 600 nm for LPOSm glasses is longer than LPFSm glasses. The dominant interaction responsible for non-exponential behavior for higher concentration in present glasses were found to be dipole-dipole type of interaction for energy transfer between donor (Sm3+) and acceptor (Sm3+) ions. From the present investigation it is suggested that presents glasses are suitable for orange light emitting devices (LEDs and laser). Khan, I; Rooh, G.; Rajaramakrishna, R.; Srisittipokakun, N.; Kim, H. J.; Kothan, S.; Kaewkhao, J.; Kirdsiri, K. Abdul Wali Khan Univ, Dept Phys, Mardan 23200, Pakistan; Rajabhat Univ, Fac Sci & Technol, Phys Program, Nakhon Pathom 73000, Thailand; Nakhon Pathom Rajabhat Univ, Ctr Excellence Glass Technol & Mat Sci CEGM, Nakhon Pathom 73000, Thailand; Kyungpook Natl Univ, Dept Phys, Deagu 702701, South Korea; Chiang Mai Univ, Fac Associated Med Sci, Ctr Radiat Res & Med Imaging, Dept Radiol Technol, Chiang Mai 50200, Thailand R, Rajaramakrishna/E-8110-2019; Rooh, Gul/AAF-2076-2019 57202901274; 24401665700; 49864195200; 35365411300; 59051568100; 6507017165; 23974520300; 34881618200 Jakrapong@webmail.npru.ac.th;keyrati@hotmail.com; JOURNAL OF LUMINESCENCE J LUMIN 0022-2313 1872-7883 222 SCIE OPTICS 2020 3.599 23.7 1.38 2025-06-25 35 38 Lead oxide; Samarium ions; Silicate; Judd-ofelt analysis; Radiative properties PHOTOLUMINESCENCE PROPERTIES; SILICATE-GLASSES; FLUORESCENCE PROPERTIES; RADIATIVE PROPERTIES; BORATE GLASSES; PHOSPHATE Judd-ofelt analysis; Lead oxide; Radiative properties; Samarium ions; Silicate Citrus fruits; Energy transfer; Gadolinium compounds; Glass; Glass bonding; Heat radiation; Ions; Lead oxide; Lithium compounds; Luminescence; Silica; Silicates; Silicon; Solid state devices; Comparative studies; Judd-ofelt analysis; Light emitting devices; Luminescence properties; Melt quenching method; Non-exponential behavior; Radiative properties; Samarium-ion; Samarium compounds English 2020 2020-06 10.1016/j.jlumin.2020.117136 바로가기 바로가기 바로가기 바로가기
Article Comprehending the role of trap centers and host energy transfers in excitation density dependent kinetics of Ce doped Gd3Ga3Al2O12 scintillator; an unresolved scintillation characteristic Single crystal of Ce doped Gd3Ga3Al2O12 is one of the most studied advanced scintillators currently. The scintillation kinetics has been investigated with different excitations. The higher excitation density of alpha particles quenches the scintillation light yield but on the contrary the decay curve gets accelerated with gamma rays unlike that have been typically observed for conventionally used halide scintillators. In view of resolving this unusual behavior, a thorough investigation has been first time performed by carrying out systematic experiments on temperature dependent scintillation properties with gamma and alpha irradiation. The dependence of light yield for both radiations behaves differently with temperature with a notable early onset of quenching for charged particles. All three decay components also behave differently with temperature to indicate the various mechanisms governing the relaxation of excited charged carriers. At some temperatures the decay time components indeed behave in the similar manner as measured for halide crystals. The maximum difference in decay components carrying major amplitude occurs close to mom temperatures leading to better discrimination ability. A strong correlation with thermo-luminescence properties has been observed to investigate the role of defect structure. A comprehensive model based on the prominent role of charged carriers released from trap centers along with the energy transfer and migration via Gd sub-lattice in governing the scintillation properties has been convincingly presented. It has demonstrated precisely the unusual behavior of this material but can be extended more considerably to describe various properties of other scintillators as well. Tyagi, Mohit; Khan, Arshad; Phan Quoc Vuong; Kim, H. J. Kyungpook Natl Univ, Dept Phys, Daegu 41566, South Korea; Bhabha Atom Res Ctr, Tech Phys Div, Mumbai 400085, Maharashtra, India ; Kim, Hong Joo/AAE-1178-2022; Tyagi, Mohit/T-2735-2019; Khan, Arshad/ABB-1566-2021 21234397100; 56017063700; 57207618553; 59051568100 hongjooknu@gmail.com; JOURNAL OF LUMINESCENCE J LUMIN 0022-2313 1872-7883 219 SCIE OPTICS 2020 3.599 23.7 0.31 2025-06-25 4 4 Single crystal; Scintillation; Defects; Luminescence; Particle identification PULSE-SHAPE DISCRIMINATION; SINGLE-CRYSTAL; LIGHT YIELD; LUMINESCENCE; GAMMA; DETECTOR Defects; Luminescence; Particle identification; Scintillation; Single crystal Aluminum compounds; Cerium; Charged particles; Defects; Energy transfer; Gadolinium compounds; Gallium compounds; Gamma rays; Ionization; Light; Luminescence; Scintillation counters; Single crystals; Discrimination ability; Particle identifications; Scintillation characteristics; Scintillation kinetics; Scintillation light yield; Scintillation properties; Systematic experiment; Temperature dependent; Scintillation English 2020 2020-03 10.1016/j.jlumin.2019.116815 바로가기 바로가기 바로가기 바로가기
Article Development of Eu³⁺-doped phosphate glass for red luminescent solid-state optical devices Eu3+-doped lithium phosphate glasses, (63-x) P2O5-32Li(2)O-5Al(2)O(3)-xEu(2)O(3), where 0 D-5(3,1) excitation transition at 10K was found due to a decrease in thermal energy of ground states. The presence of O2--Eu3+ charge transfer excitation band (CTB, 200-275 nm) was observed. An optimum PL emission was recorded in the glass with 3 mol%, whereas the concentration quenching was noticed for the sample with 5 mol%. The results show that the Eu3+-doped lithium phosphate glasses could be potential candidates for red laser applications. Aryal, P.; Kim, H. J.; Khan, A.; Saha, S.; Kang, S. J.; Kothan, S.; Yamsuk, Y.; Kaewkhao, J. Kyungpook Natl Univ, Dept Phys, Daegu 41566, South Korea; Semyung Univ, Coll Liberal Arts, Jechon 27136, South Korea; Chiang Mai Univ, Fac Associated Med Sci, Ctr Radiat Res & Med Imaging, Dept Radiol Technol, Chiang Mai 50200, Thailand; Nakhon Pathom Rajabhat Univ, Ctr Excellence Glass Technol & Mat Sci CEGM, Muang 73000, Nakhon Pathom, Thailand; Nakhon Pathom Rajabhat Univ, Fac Sci & Technol, Phys Program, Muang 73000, Nakhon Pathom, Thailand ; Kim, Hong Joo/AAE-1178-2022; Khan, Arshad/ABB-1566-2021 57196222852; 59051568100; 56017063700; 55935496600; 58837462700; 6507017165; 57203526306; 23974520300 hongjoo@knu.ac.kr; JOURNAL OF LUMINESCENCE J LUMIN 0022-2313 1872-7883 227 SCIE OPTICS 2020 3.599 23.7 2.46 2025-06-25 42 50 Phosphate glasses; Melt-quenching technique; Photoluminescence; X-ray luminescence; Judd-Ofelt theory RARE-EARTH IONS; EU3+ IONS; FLUORESCENCE; ABSORPTION; EMISSION; OXIDES; BAND Judd-Ofelt theory; Melt-quenching technique; Phosphate glasses; Photoluminescence; X-ray luminescence Charge transfer; Ground state; Judd-Ofelt theory; Laser applications; Lithium compounds; Optical properties; Quenching; Charge-transfer excitations; Concentration quenching; Lithium-phosphate glass; Melt quenching techniques; Photoluminescence intensities; Radiative transition probabilities; Solid-state optical devices; Stimulated emission cross section; Glass English 2020 2020-11 10.1016/j.jlumin.2020.117564 바로가기 바로가기 바로가기 바로가기
Article Effect of sodium oxide and sodium fluoride in gadolinium phosphate glasses doped with Eu2O3 content Sodium gadolinium phosphate oxide and sodium gadolinium oxyfluoride glasses doped with europium oxide were synthesized by melt-quenching method. The density, molar volume and refractive index of the glass samples were carried out. Density and molar volume of oxide glass is more than oxyfluoride glass. The average phosphate to phosphate distance for oxide glass seems to be more than oxyfluoride glass. Polaron radius, interionic radius shows 1.181 nm, 2.88 nm and 1.174 nm, 2.86 nm for oxide glass and oxyfluoride glasses respectively. Oxide electronic Polarizability and optical basicity of the oxide glass are lower than oxy-fluoride glass. Theoretical optical basicity shows higher for oxide glass than oxyfluoride suggesting increase in covalency of the cation to oxygen bonds in oxide glass. Optical band gap was estimated and found to be 3.061eV and 3.204 eV for oxide and oxyfluoride glass. Theoretical two photon absorption coefficient beta were evaluated and found to be 11.96 and 10.80 for oxide and oxyfluoride glasses respectively. Electron-phonon coupling strength were evaluated from the phonon side band spectra for the oxide and oxy-fluoride glasses. The asymmetry ratio (R) show higher for NaF doped glass than Na2O confirming their role in elevated ionicity for oxyfluoride glass than oxide glass. Furthermore, the glasses were subjected to study for their luminescence properties of the oxide and oxyfluoride glass samples. Ravangvong, S.; Chanthima, N.; Rajaramakrishn, R.; Kim, H. J.; Kaewkhao, J. Nakhon Pathom Rajabhat Univ, Fac Sci & Technol, Phys Program, Nakhon Pathom 73000, Thailand; Nakhon Pathom Rajabhat Univ, Ctr Excellence Glass Technol & Mat Sci CEGM, Nakhon Pathom 73000, Thailand; Kyungpook Natl Univ, Dept Phys, Daegu 702701, South Korea ; Ravangvong, Sunantasak/KDO-4085-2024; Chanthima, Natthakridta/HRC-8083-2023; Kim, Hong Joo/AAE-1178-2022; R, Rajaramakrishna/E-8110-2019 57190376166; 35361597600; 49864195200; 59051568100; 23974520300 natthakridta@webmail.npru.ac.th;jakrapong@webmail.npru.ac.th; JOURNAL OF LUMINESCENCE J LUMIN 0022-2313 1872-7883 219 SCIE OPTICS 2020 3.599 23.7 2 2025-06-25 35 36 Europium; Oxyfluoride; Tauc plot; Coupling strength; Phosphate glass PHONON SIDE-BAND; ENERGY-TRANSFER; OPTICAL-ABSORPTION; EU3+ IONS; LUMINESCENCE CHARACTERISTICS; SPECTROSCOPIC INVESTIGATIONS; EU3+-DOPED PHOSPHATE; OXYFLUORIDE GLASS; BORATE GLASSES; PHOTOLUMINESCENCE Coupling strength; Europium; Oxyfluoride; Phosphate glass; Tauc plot Electron-phonon interactions; Energy gap; Europium; Gadolinium compounds; Glass; Luminescence; Optical band gaps; Refractive index; Sodium Fluoride; Two photon processes; Volume measurement; Coupling strengths; Density and molar volumes; Electron-phonon coupling strengths; Luminescence properties; Oxyfluorides; Phosphate glass; Tauc plots; Two photon absorption; Europium compounds English 2020 2020-03 10.1016/j.jlumin.2019.116950 바로가기 바로가기 바로가기 바로가기
Article Exclusive π⁰p electroproduction off protons in the resonance region at photon virtualities 0.4 GeV² ≤ Q² ≤ 1 GeV² The exclusive electroproduction process ep -> e' p' pi(0) was measured in the range of photon virtualities Q(2) = 0.4-1.0 GeV2 and the invariant mass range of the p pi(0) system of W = 1.1-1.8 GeV. These kinematics are covered in exclusive pi(0) electroproduction off the proton with nearly complete angular coverage in the p pi(0) center-of-mass system and with high statistical accuracy. Nearly 36 000 cross-section points were measured, and the structure functions sigma(T) + epsilon sigma(L), sigma(LT), and sigma(TT), were extracted via fitting the phi(pi 0) dependence of the cross section. A Legendre polynomial expansion analysis demonstrates the sensitivity of our data to high-lying N* and Delta* resonances with M > 1.6 GeV. As part of a broad effort to determine the electrocouplings of the N* and Delta* resonances using both single- and double-pion electroproduction, this dataset is crucial for the reliable extraction of the high-lying resonance electrocouplings from the combined isospin analysis of the N pi and pi(+)pi(-)p channels. Markov, N.; Joo, K.; Burkert, V. D.; Mokeev, V. I.; Smith, L. C.; Ungaro, M.; Adhikari, S.; Amaryan, M. J.; Angelini, G.; Atac, H.; Avakian, H.; Gayoso, C. Ayerbe; Baltzell, N. A.; Barion, L.; Battaglieri, M.; Bedlinskiy, I.; Bedlinskiy, I.; Benmokhtar, F.; Biselli, A. S.; Bossu, F.; Boiarinov, S.; Briscoe, W. J.; Brooks, W. K.; Carman, D. S.; Carvajal, J. C.; Celentano, A.; Chatagnon, P.; Chetry, T.; Cole, P. L.; Contalbrigo, M.; Crede, V.; Ciullo, G.; D'Angelo, A.; Dashyan, N.; De Vita, R.; De Sanctis, E.; Defurne, M.; Deur, A.; Diehl, S.; Djalali, C.; Dupre, R.; Ehrhart, M.; El Alaoui, A.; El Fassi, L.; Eugenio, P.; Evans, C.; Filippi, A.; Ghandilyan, Y.; Girod, F. X.; Golovatch, E.; Gothe, R. W.; Griffioen, K. A.; Guidal, M.; Hafidi, K.; Hakobyan, H.; Hattawy, M.; Hayward, T. B.; Hicks, K.; Holtrop, M.; Ilieva, Y.; Ireland, D. G.; Ishkhanov, B. S.; Isupov, E. L.; Jenkins, D.; Jo, H. S.; Keller, D.; Khachatryan, M.; Khanal, A.; Khandaker, M.; Kim, A.; Kim, C. W.; Kim, W.; Klein, F. J.; Kubarovsky, V.; Lanza, L.; Leali, M.; Livingston, K.; MacGregor, I. J. D.; Marchand, D.; Mascagna, V.; McKinnon, B.; Mineeva, T.; Mirazita, M.; Nadel-Turonski, P.; Nanda, S.; Niccolai, S.; Niculescu, G.; Osipenko, M.; Paolone, M.; Pappalardo, L. L.; Paremuzyan, R.; Park, K.; Pasyuk, E.; Phelps, W.; Pogorelko, O.; Price, J. W.; Prok, Y.; Protopopescu, D.; Ripani, M.; Riser, D.; Rizzo, A.; Rosner, G.; Rowley, J.; Sabatie, F.; Salgado, C.; Schumacher, R. A.; Sharabian, Y. G.; Shrestha, U.; Sokhan, D.; Soto, O.; Sparveris, N.; Stepanyan, S.; Stoler, P.; Strakovsky, I. I.; Strauch, S.; Taiuti, M.; Tan, J. A.; Tyler, N.; Venturelli, L.; Voskanyan, H.; Voutier, E.; Wang, R.; Wei, X.; Wood, M. H.; Zachariou, N. Argonne Natl Lab, 9700 S Cass Ave, Argonne, IL 60439 USA; Arizona State Univ, Tempe, AZ 85287 USA; Calif State Univ Dominguez Hills, Carson, CA 90747 USA; Canisius Coll, Buffalo, NY 14208 USA; Carnegie Mellon Univ, Pittsburgh, PA 15213 USA; Catholic Univ Amer, Washington, DC 20064 USA; Univ Paris Saclay, CEA, IRFU, F-91191 Gif Sur Yvette, France; Univ Connecticut, Storrs, CT 06269 USA; Duquesne Univ, Pittsburgh, PA 15282 USA; Fairfield Univ, Fairfield, CT 06824 USA; Florida Int Univ, Miami, FL 33199 USA; Florida State Univ, Tallahassee, FL 32306 USA; Univ Genoa, I-16146 Genoa, Italy; George Washington Univ, Washington, DC 20052 USA; INFN, Sez Ferrara, I-44100 Ferrara, Italy; INFN, Lab Nazl Frascati, I-00044 Frascati, Italy; INFN, Sez Genova, I-16146 Genoa, Italy; INFN, Sez Roma Tor Vergata, I-00133 Rome, Italy; INFN, Sez Torino, I-10125 Turin, Italy; INFN, Sez Pavia, I-27100 Pavia, Italy; Univ Paris Saclay, Univ Paris Sud, Inst Phys Nucl, IN2P3 CNRS, F-91406 Orsay, France; James Madison Univ, Harrisonburg, VA 22807 USA; Kyungpook Natl Univ, Daegu 41566, South Korea; Lamar Univ, 4400 Martin Luther King Jr Blvd,POB 10009, Beaumont, TX 77710 USA; Mississippi State Univ, Mississippi State, MS 39762 USA; Natl Res Ctr Kurchatov Inst ITEP, Moscow 117259, Russia; Univ New Hampshire, Durham, NH 03824 USA; Norfolk State Univ, Norfolk, VA 23504 USA; Ohio Univ, Athens, OH 45701 USA; Old Dominion Univ, Norfolk, VA 23529 USA; Rensselaer Polytech Inst, Troy, NY 12180 USA; Univ Roma Tor Vergata, I-00133 Rome, Italy; Lomonosov Moscow State Univ, Skobeltsyn Inst Nucl Phys, Moscow 119234, Russia; Univ South Carolina, Columbia, SC 29208 USA; Temple Univ, Philadelphia, PA 19122 USA; Thomas Jefferson Natl Accelerator Facil, Newport News, VA 23606 USA; Univ Tecn Federico Santa Maria, Casilla 110-5, Valparaiso, Chile; Univ Brescia, I-25123 Brescia, Italy; Univ Glasgow, Glasgow G12 8QQ, Lanark, Scotland; Univ York, York YO10 5DD, N Yorkshire, England; Univ Virginia, Charlottesville, VA 22901 USA; Virginia Polytech Inst & State Univ, Blacksburg, VA 24061 USA; Coll William & Mary, Williamsburg, VA 23187 USA; Yerevan Phys Inst, Yerevan 375036, Armenia; Idaho State Univ, Pocatello, ID 83209 USA ; Hakobyan, Hayk/JUF-6461-2023; Holtrop, Maurik/A-9017-2010; Adikaram, Dasuni/D-1539-2016; Ireland, David/E-8618-2010; Rizzo, Alessandro/C-6397-2014; Taiuti, Mauro/K-5324-2014; Filippi, Alessandra/AAE-9322-2020; D'Angelo, Annalisa/A-2439-2012; Protopopescu, Dan/D-5645-2012; Alaoui, Ahmed/B-4638-2015; Khanal, Aaditya/ABI-5610-2020; Filippi, Alessandra/I-9530-2012; McKinnon, Bryan/J-2928-2018; Mascagna, Valerio/HLQ-1103-2023; Rosner, Guenther/ABB-5516-2021; Osipenko, Mikhail/N-8292-2015; Jo, Hyon-Suk/HGC-7070-2022; Ciullo, Giuseppe/X-6539-2018; Lanza, Lucilla/E-6479-2017; Deur, Alexandre/H-9778-2019; Brooks, William/C-8636-2013; Mineeva, Taisiya/MDT-1592-2025; Pappalardo, Luciano/AAB-2380-2021; Celentano, Andrea/JFJ-2728-2023; Sabatie, Franck/K-9066-2015; Battaglieri, Marco/I-6262-2018; Bozzi, Giuseppe/H-7283-2017; MacGregor, Ian/D-4072-2011; Sparveris, Nikolaos/C-4751-2008; Burkert, Volker/AAF-7395-2020; Schumacher, Reinhard/K-6455-2013; Isupov, Evgeny/J-2976-2012 35227617100; 57202638465; 7004440244; 7004546205; 8115440100; 35228099400; 56258456900; 35277104000; 57193121212; 57210826461; 7006613415; 15755099700; 35226938500; 23033257000; 7004520678; 35277104100; 57218527298; 35227021700; 35725064700; 35277071300; 7005532059; 35400106000; 7005853901; 57214364802; 54392656300; 57202987431; 57189889203; 35227101500; 7003468594; 6602900241; 6603765308; 55828029600; 6507987909; 59345445900; 7006437620; 56272524200; 6604025441; 57217562965; 35374416600; 35069234100; 57193421717; 26535686800; 14041647600; 9845148400; 57199193485; 8695796100; 57215024895; 35227280900; 35227273800; 7102183142; 7004574641; 7003432409; 34570410000; 57208726428; 56115055200; 57206656408; 22966851900; 7005060869; 35227424100; 57209456981; 7006434288; 35227460400; 57237808500; 35227429400; 7102814361; 57193668661; 57208691543; 13405022500; 36604596000; 59817767500; 35227558900; 57214026240; 6701392158; 56047689500; 6507646370; 9278396500; 7006040977; 7004889588; 22135531000; 35227669300; 26023453000; 35227656900; 6603294089; 58304644200; 35227746500; 35227763200; 6701825145; 22986163400; 7004207376; 36085149700; 55722196400; 35227791700; 56362788600; 8903140900; 55329126900; 35227871000; 35227881200; 7003515879; 57194526421; 56589489300; 7102538331; 57214597279; 35227896300; 35228024200; 7201653195; 35227996900; 57213706614; 16065283100; 55787422600; 6507906118; 7004491103; 8331193400; 22969481600; 7004321986; 8903145200; 57200599233; 57203722948; 22136651400; 6504161736; 6603350317; 57202991788; 13204321200; 57201559118; 36836386600 markov@jlab.org; PHYSICAL REVIEW C PHYS REV C 2469-9985 2469-9993 101 1 SCIE PHYSICS, NUCLEAR 2020 3.296 23.7 0.76 2025-06-25 9 11 CROSS-SECTIONS; NUCLEON; GAMMA; CLAS; TRANSITION English 2020 2020-01-21 10.1103/physrevc.101.015208 바로가기 바로가기 바로가기 바로가기
Article First measurement of direct photoproduction of the a2(1320)⁰ meson on the proton We present the first measurement of the reaction gamma p -> a(2) (1320)(0) p in the photon energy range 3.5-5.5 GeV and four-momentum transfer squared 0.2 pi(0)eta p Tip and reconstructing the pi(0)eta invariant mass. The most prominent feature of the differential cross section is a dip at -t approximate to 0.55 GeV2. This can be described in the framework of Regge phenomenology, where the exchange degeneracy hypothesis predicts a zero in the reaction amplitude for this value of the four-momentum transfer. Celentano, A.; Battaglieri, M.; De Vita, R.; Marsicano, L.; Mathieu, V; Pilloni, A.; Szczepaniak, A.; Adhikari, K. P.; Adhikari, S.; Amaryan, M. J.; Angelini, G.; Atac, H.; Barion, L.; Bedlinskiy, I; Benmokhtar, Fatiha; Bianconi, A.; Biselli, A. S.; Bossu, F.; Boiarinov, S.; Briscoe, W. J.; Brooks, W. K.; Bulumulla, D.; Burkert, V. D.; Carman, D. S.; Carvajal, J. C.; Chatagnon, P.; Chetry, T.; Ciullo, G.; Clark, L.; Cole, P. L.; Contalbrigo, M.; Cortes, O.; Crede, V; Cruz-Torres, R.; D'Angelo, A.; Dashyan, N.; Defurne, M.; Deur, A.; Diehl, S.; Djalali, C.; Dugger, M.; Dupre, R.; Egiyan, H.; Ehrhart, M.; El Alaoui, A.; El Fassi, L.; Elouadrhiri, L.; Eugenio, P.; Fedotov, G.; Fersch, R.; Filippi, A.; Gavalian, G.; Gevorgyan, N.; Girod, F. X.; Glazier, D., I; Gohn, W.; Golovatch, E.; Gothe, R. W.; Griffioen, K. A.; Guidal, M.; Hafidi, K.; Hakobyan, H.; Harrison, N.; Hattawy, M.; Hauenstein, F.; Hayward, T. B.; Heddle, D.; Hicks, K.; Hobart, A.; Holtrop, M.; Ilieva, Y.; Ireland, D. G.; Ishkhanov, B. S.; Isupov, E. L.; Jenkins, D.; Jo, H. S.; Joo, K.; Joosten, S.; Keller, D.; Khachatryan, M.; Khanal, A.; Khandaker, M.; Kim, A.; Kim, C. W.; Kim, W.; Klein, F. J.; Kubarovsky, V; Lanza, L.; Leali, M.; Lenisa, P.; Livingston, K.; Lucherini, V; MacGregor, I. J. D.; Marchand, D.; Markov, N.; Mascagna, V; McCracken, M. E.; McKinnon, B.; Meziani, Z-E; Mirazita, M.; Mokeev, V; Movsisyan, A.; Munevar, E.; Camacho, C. Munoz; Nadel-Turonski, P.; Neupane, K.; Niccolai, S.; Niculescu, G.; Osipenko, M.; Ostrovidov, A., I; Paolone, M.; Pappalardo, L. L.; Paremuzyan, R.; Pasyuk, E.; Phelps, W.; Pogorelko, O.; Price, J. W.; Prok, Y.; Ripani, M.; Ritman, J.; Rizzo, A.; Rosner, G.; Rowley, J.; Sabatie, F.; Salgado, C.; Schmidt, A.; Schumacher, R. A.; Shrestha, U.; Sokan, D.; Soto, O.; Sparveris, N.; Stepanyan, S.; Strakovsky, I. I.; Strauch, S.; Tan, J. A.; Tyler, N.; Ungaro, M.; Venturelli, L.; Voskanyan, H.; Voutier, E.; Watts, D.; Wei, X.; Wood, M. H.; Zachariou, N.; Zhang, J.; Zhao, Z. W. Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy; Thomas Jefferson Natl Accelerator Facil, Newport News, VA 23606 USA; Univ Complutense Madrid, Dept Fsica Ter, Madrid 28040, Spain; Univ Complutense Madrid, IPARCOS, Madrid 28040, Spain; European Ctr Theoret Studies & Nucl Phys ECT, Str Tabarelle 286, I-38123 Villazzano, Trento, Italy; Fdn Bruno Kessler, Str Tabarelle 286, I-38123 Villazzano, Trento, Italy; Indiana Univ, Dept Phys, Bloomington, IN 47405 USA; Indiana Univ, Ctr Explorat Energy & Matter, Bloomington, IN 47403 USA; Thomas Jefferson Natl Accelerator Facil, Theory Ctr, Newport News, VA 23606 USA; Old Dominion Univ, Norfolk, VA 23529 USA; Florida Int Univ, Miami, FL 33199 USA; George Washington Univ, Washington, DC 20052 USA; Temple Univ, Philadelphia, PA 19122 USA; Ist Nazl Fis Nucl, Sez Ferrara, I-44100 Ferrara, Italy; Kurchatov Inst ITEP, Natl Res Ctr, Moscow 117259, Russia; Duquesne Univ, 600 Forbes Ave, Pittsburgh, PA 15282 USA; Univ Brescia, I-25123 Brescia, Italy; Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy; Fairfield Univ, Fairfield, CT 06824 USA; Univ Paris Saclay, IRFU, CEA, F-91191 Gif Sur Yvette, France; Univ Tecn Federico Santa Maria, Casilla 110-V, Valparaiso, Chile; Univ Paris Saclay, CNRS, IN2P3, IJCLab, F-91405 Orsay, France; Mississippi State Univ, Mississippi State, MS 39762 USA; Univ Ferrara, I-44121 Ferrara, Italy; Univ Glasgow, Glasgow G12 8QQ, Lanark, Scotland; Lamar Univ, 4400 MLK Blvd,POB 10009, Beaumont, TX 77710 USA; Idaho State Univ, Pocatello, ID 83209 USA; Florida State Univ, Tallahassee, FL 32306 USA; MIT, Cambridge, MA 02139 USA; Ist Nazl Fis Nucl, Sez Roma Tor Vergata, I-00133 Rome, Italy; Univ Roma Tor Vergata, I-00133 Rome, Italy; Yerevan Phys Inst, Yerevan 375036, Armenia; Univ Connecticut, Storrs, CT 06269 USA; Ohio Univ, Athens, OH 45701 USA; Univ South Carolina, Columbia, SC 29208 USA; Arizona State Univ, Tempe, AZ 85287 USA; Univ New Hampshire, Durham, NH 03824 USA; Argonne Natl Lab, 9700 S Cass Ave, Argonne, IL 60439 USA; Lomonosov Moscow State Univ, Skobeltsyn Inst Nucl Phys, Moscow 119234, Russia; Christopher Newport Univ, Newport News, VA 23606 USA; Coll William & Mary, Williamsburg, VA 23187 USA; Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy; Virginia Tech, Blacksburg, VA 24061 USA; Kyungpook Natl Univ, Daegu 41566, South Korea; Univ Virginia, Charlottesville, VA 22901 USA; Norfolk State Univ, Norfolk, VA 23504 USA; Catholic Univ Amer, Washington, DC 20064 USA; Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy; Univ Insubria, I-22100 Como, Italy; Carnegie Mellon Univ, Pittsburgh, PA 15213 USA; James Madison Univ, Harrisonburg, VA 22807 USA; Calif State Univ Dominguez Hills, Carson, CA 90747 USA; Inst Kernphys Juelich, Julich, Germany; Univ York, York YO10 5DD, N Yorkshire, England; Canisius Coll, Buffalo, NY 14208 USA; Duke Univ, Durham, NC 27708 USA Sparveris, Nikolaos/C-4751-2008; D'Angelo, Annalisa/A-2439-2012; Holtrop, Maurik/A-9017-2010; Zhang, Jixie/A-1461-2016; Jo, Hyon-Suk/HGC-7070-2022; Osipenko, Mikhail/N-8292-2015; Lanza, Lucilla/E-6479-2017; Deur, Alexandre/H-9778-2019; Ireland, David/E-8618-2010; Higinbotham, Douglas/J-9394-2014; Joosten, Sylvester/HZL-4182-2023; Celentano, Andrea/J-6190-2012; Sabatie, Franck/K-9066-2015; Khanal, Aaditya/ABI-5610-2020; Filippi, Alessandra/AAE-9322-2020; Mascagna, Valerio/HLQ-1103-2023; Schumacher, Reinhard/K-6455-2013; Pappalardo, Luciano/AAB-2380-2021; Filippi, Alessandra/I-9530-2012; Hakobyan, Hayk/JUF-6461-2023; Ciullo, Giuseppe/X-6539-2018; Zhao, Zhi-Wen/HZI-5398-2023; MacGregor, Ian/D-4072-2011; Marsicano, Luca/KPB-4594-2024; Rossi, Patrizia/B-5943-2019; Brooks, William/C-8636-2013; Celentano, Andrea/JFJ-2728-2023; Isupov, Evgeny/J-2976-2012; Mathieu, Vincent/N-9218-2018; Bozzi, Giuseppe/H-7283-2017; Dugger, Michael/AAR-5206-2021; Ireland, David/N-4957-2019; Pilloni, Alessandro/M-3626-2014; McKinnon, Bryan/J-2928-2018; Burkert, Volker/AAF-7395-2020; Alaoui, Ahmed/B-4638-2015; Hyde, Charles/W-9190-2018; Rosner, Guenther/ABB-5516-2021; Battaglieri, Marco/I-6262-2018 54392656300; 7004520678; 59345445900; 57193833269; 14825520500; 55364479600; 57203070364; 25823658400; 56258456900; 35277104000; 57193121212; 57210826461; 23033257000; 35277104100; 57218527298; 7102358422; 35227021700; 35725064700; 35277071300; 7005532059; 35400106000; 57218357843; 7004440244; 7005853901; 57214364802; 57202987431; 57189889203; 6603765308; 36022213600; 35227101500; 7003468594; 57195915891; 6602900241; 57201114991; 55828029600; 6507987909; 56272524200; 6604025441; 57217562965; 35374416600; 35227159100; 35069234100; 35227171500; 57193421717; 26535686800; 14041647600; 35227171600; 9845148400; 57215092344; 57216999696; 8695796100; 35227304900; 12753483500; 35227280900; 8258896400; 23480055600; 35227273800; 7102183142; 57217000308; 7003432409; 34570410000; 57208726428; 52863649900; 56115055200; 55382488300; 57206656408; 7003821864; 22966851900; 57214681432; 7005060869; 35227424100; 57209456981; 7006434288; 35227460400; 57237808500; 35227429400; 57202638465; 23034837300; 7102814361; 57193668661; 57208691543; 13405022500; 36604596000; 59817767500; 35227558900; 57214026240; 6701392158; 56047689500; 6507646370; 56273696800; 9278396500; 56238532600; 7006040977; 7004889588; 35227617100; 22135531000; 8226184100; 35227669300; 24500876300; 35227656900; 7004546205; 58474853600; 16241887900; 12244632700; 6603294089; 57212715831; 35227746500; 35227763200; 6701825145; 6603112367; 22986163400; 7004207376; 36085149700; 35227791700; 56362788600; 8903140900; 55329126900; 35227871000; 7003515879; 6701495633; 56589489300; 7102538331; 57214597279; 35227896300; 35228024200; 57212416423; 7201653195; 57213706614; 55293390700; 55787422600; 6507906118; 7004491103; 22969481600; 7004321986; 57200599233; 57203722948; 35228099400; 22136651400; 6504161736; 6603350317; 7201539565; 13204321200; 57201559118; 36836386600; 57215210642; 57216598335 PHYSICAL REVIEW C PHYS REV C 2469-9985 2469-9993 102 3 SCIE PHYSICS, NUCLEAR 2020 3.296 23.7 0.38 2025-06-25 7 5 CLAS English 2020 2020-09-28 10.1103/physrevc.102.032201 바로가기 바로가기 바로가기 바로가기
Article Influence of gold ions on visible and NIR luminescence features of Er³⁺ ions in lead boroselenate glass ceramics This work is focused on the amplification of green (G), orange (O) and NIR (1.5 mu m) emissions of Er3+ ions by codoping with varying contents (traces I-4(5/2)), orange (F-4(9/2) -> I-4(5/2)) and NIR (I-4(13/2) -> I-4(15/2)) emissions of Er3+ ions due to co-doping with Au2O3. Quantitative analysis of the results of PL emission indicated that 0.075 mol% of Au2O3 is the optimal concentration for achieving the highest quantum yield of these three emissions in this glass ceramic. Additional population of 4S(3/2), F-4(9/2) and I-4(13/2) energy levels of Er3+ ions from the excited state of Au-0 metallic particles is found to be the reason for such enhancement of quantum efficiency. Reddy, A. Siva Sesha; Lakshminarayana, G.; Purnach, N.; Kumar, Valluri Ravi; Venkatramaiah, N.; Kumar, V. Ravi; Veeraiah, N. Acharya Nagarjuna Univ, Dept Phys, Nagarjuna Nagar 522510, AP, India; Kyungpook Natl Univ, Intelligent Construct Automat Ctr, 80 Daehak Ro, Daegu 41566, South Korea; VIT AP Univ, Sch Elect Engn, Inavolu 522237, AP, India; VFSTR Univ, Dept Phys, Vadlamudi 522213, AP, India; SRM Inst Sci & Technol, Dept Chem, Kattankulathur, India Nalluri, Veeraiah/L-4913-2015; Siva Sesha Reddy, Dr. A./AAU-7385-2020; nutalapati, venkatramiah/C-7381-2009; Ravi Kumar, V./AAN-9727-2021 56515304700; 57194637883; 57188545272; 57197697173; 23095936500; 57191254314; 7006347728 nvr8@rediffmail.com; JOURNAL OF LUMINESCENCE J LUMIN 0022-2313 1872-7883 226 SCIE OPTICS 2020 3.599 23.7 1.15 2025-06-25 18 17 PbO-B2O3-SeO2:Er3+ glass ceramics; Au-0 metallic particles; PL Emission; Energy transfer JUDD-OFELT PARAMETERS; UP-CONVERSION; SPECTRA; PHOTOLUMINESCENCE; EMISSION; ENHANCEMENT; OXIDE; INTENSITIES Au<sup>0</sup> metallic particles; Energy transfer; PbO-B<sub>2</sub>O<sub>3</sub>-SeO<sub>2</sub>:Er<sup>3+</sup> glass ceramics; PL Emission Citrus fruits; Crystals; Erbium compounds; Excited states; Glass ceramics; Gold; Infrared devices; Ions; Lead oxide; Light absorption; Nanocrystallites; Nanoparticles; Particle size analysis; Photoluminescence; Plasmons; Quantum theory; Selenium; Selenium compounds; Semiconductor quantum wells; Surface plasmon resonance; X ray diffraction; X ray photoelectron spectroscopy; Crystallization temperature; Inter-band transition; IR and Raman spectra; Melt quenching method; Optimal concentration; Photoluminescence spectrum; Transition probabilities; Visible and NIR luminescences; Gold compounds English 2020 2020-10 10.1016/j.jlumin.2020.117481 바로가기 바로가기 바로가기 바로가기
Article Luminescence properties of TlAlF 4 crystal Daniel, D. Joseph; Pandey, Indra Raj; Kim, H. J.; Lee, Moo Hyun; Tyagi, Mohit Kyungpook Natl Univ, Dept Phys, Daegu 41566, South Korea; Ctr Underground Phys, Inst Basic Sci, Daejeon 34126, South Korea; Bhabha Atom Res Ctr, Tech Phys Div, Mumbai 400085, Maharashtra, India ; Kim, Hong Joo/AAE-1178-2022; Lee, Moo/AAK-4266-2020; Tyagi, Mohit/T-2735-2019 35319662800; 57188976474; 59051568100; 57198252980; 21234397100 hongjoo@knu.ac.kr; JOURNAL OF LUMINESCENCE J LUMIN 0022-2313 1872-7883 223 SCIE OPTICS 2020 3.599 23.7 0.23 2025-06-25 5 4 ALKALI-HALIDE CRYSTALS; CHEMICAL TRENDS; TL+ CENTERS; THALLIUM; ENERGY; EMISSION; CREATION; BAND; SPECTROSCOPY; RELAXATION A. Crystal; B. Excitation; C. Emission; D. Temperature dependent Absorption spectroscopy; Aluminum compounds; Crystal growth from melt; Crystal structure; Emission spectroscopy; Light absorption; Luminescence; Rietveld refinement; Single crystals; Temperature; Configuration coordinate; Excitation and emission spectra; Luminescence properties; Powder X ray diffraction; Temperature dependent; Temperature dependent photoluminescences; Thermally stimulated luminescence; Vertical Bridgman method; Fluorine compounds English 2020 2020-07 10.1016/j.jlumin.2020.117197 바로가기 바로가기 바로가기 바로가기
Article Multiparticle correlation studies in pPb collisions √sNN=8.16 TeV The second- and third-order azimuthal anisotropy Fourier harmonics of charged particles produced in pPb collisions, at root s(NN) = 8.16 TeV, are studied over a wide range of event multiplicities. Multiparticle correlations are used to isolate global properties stemming from the collision overlap geometry. The second-order "elliptic" harmonic moment is obtained with high precision through four-, six-, and eight-particle correlations and, for the first time, the third-order "triangular" harmonic moment is studied using four-particle correlations. A sample of peripheral PbPb collisions at root s(NN) = 5.02 TeV that covers a similar range of event multiplicities as the pPb results is also analyzed. Model calculations of initial-state fluctuations in pPb and PbPb collisions can be directly compared to the high-precision experimental results. This work provides new insight into the fluctuation-driven origin of the v(3) coefficients in pPb and PbPb collisions, and into the dominating overall collision geometry in PbPb collisions at the earliest stages of heavy ion interactions. Sirunyan, A. M.; Tumasyan, A.; Adam, W.; Ambrogi, F.; Asilar, E.; Bergauer, T.; Brandstetter, J.; Dragicevic, M.; Eroe, J.; Del Valle, A. Escalante; Flechl, M.; Fruehwirth, R.; Ghete, V. M.; Hrubec, J.; Jeitler, M.; Krammer, N.; Kraetschmer, I; Liko, D.; Madlener, T.; Mikulec, I; Rad, N.; Rohringer, H.; Schieck, J.; Schoefbeck, R.; Spanring, M.; Spitzbart, D.; Waltenberger, W.; Wittmann, J.; Wulz, C-E; Zarucki, M.; Chekhovsky, V; Mossolov, V; Gonzalez, J. Suarez; De Wolf, E. A.; Di Croce, D.; Janssen, X.; Lauwers, J.; Lelek, A.; Pieters, M.; Van Haevermaet, H.; Van Mechelen, P.; Van Remortel, N.; Abu Zeid, S.; Blekman, F.; D'Hondt, J.; De Clercq, J.; Deroover, K.; Flouris, G.; Lontkovskyi, D.; Lowette, S.; Marchesini, I; Moortgat, S.; Moreels, L.; Python, Q.; Skovpen, K.; Tavernier, S.; Van Doninck, W.; Van Mulders, P.; Van Parijs, I; Beghin, D.; Bilin, B.; Brun, H.; Clerbaux, B.; De Lentdecker, G.; Delannoy, H.; Dorney, B.; Fasanella, G.; Favart, L.; Grebenyuk, A.; Kalsi, A. K.; Lenzi, T.; Luetic, J.; Postiau, N.; Starling, E.; Thomas, L.; Vander Velde, C.; Vanlaer, P.; Vannerom, D.; Wang, Q.; Cornelis, T.; Dobur, D.; Fagot, A.; Gul, M.; Khvastunov, I; Poyraz, D.; Roskas, C.; Trocino, D.; Tytgat, M.; Verbeke, W.; Vermassen, B.; Vit, M.; Zaganidis, N.; Bakhshiansohi, H.; Bondu, O.; Bruno, G.; Caputo, C.; David, P.; Delaere, C.; Delcourt, M.; Giammanco, A.; Krintiras, G.; Lemaitre, V; Magitteri, A.; Piotrzkowski, K.; Saggio, A.; Marono, M. Vidal; Vischia, P.; Zobec, J.; Alves, F. L.; Alves, G. A.; Silva, G. Correia; Hensel, C.; Moraes, A.; Pol, M. E.; Teles, P. Rebello; Belchior Batista Das Chagas, E.; Carvalho, W.; Chinellato, J.; Coelho, E.; Costa, E. M.; Silveira, G. G.; De Jesus Damiao, D.; De Oliveira Martins, C.; Fonseca De Souza, S.; Malbouisson, H.; Matos Figueiredo, D.; Melo De Almeida, M.; Mora Herrera, C.; Mundim, L.; Nogima, H.; Prado Da Silva, W. L.; Sanchez Rosas, L. J.; Santoro, A.; Sznajder, A.; Thiel, M.; Tonelli Manganote, E. J.; Torres Da Silva De Araujo, F.; Vilela Pereira, A.; Ahuja, S.; Bernardes, C. A.; Calligaris, L.; Fernandez Perez Tomei, T. R.; Gregores, E. M.; Mercadante, P. G.; Novaes, S. F.; Padula, Sandra S.; Aleksandrov, A.; Hadjiiska, R.; Iaydjiev, P.; Marinov, A.; Misheva, M.; Rodozov, M.; Shopova, M.; Sultanov, G.; Dimitrov, A.; Litov, L.; Pavlov, B.; Petkov, P.; Fang, W.; Gao, X.; Yuan, L.; Ahmad, M.; Bian, J. G.; Chen, G. M.; Chen, H. S.; Chen, M.; Chen, Y.; Jiang, C. H.; Leggat, D.; Liao, H.; Liu, Z.; Shaheen, S. M.; Spiezia, A.; Tao, J.; Yazgan, E.; Zhang, H.; Zhang, S.; Zhao, J.; Ban, Y.; Chen, G.; Levin, A.; Li, J.; Li, L.; Li, Q.; Mao, Y.; Qian, S. J.; Wang, D.; Wang, Y.; Avila, C.; Cabrera, A.; Carrillo Montoya, C. A.; Chaparro Sierra, L. F.; Florez, C.; Gonzalez Hernandez, C. F.; Segura Delgado, M. A.; Courbon, B.; Godinovic, N.; Lelas, D.; Puljak, I; Sculac, T.; Antunovic, Z.; Kovac, M.; Brigljevic, V; Ferencek, D.; Kadija, K.; Mesic, B.; Roguljic, M.; Starodumov, A.; Susa, T.; Ather, M. W.; Attikis, A.; Kolosova, M.; Mavromanolakis, G.; Mousa, J.; Nicolaou, C.; Ptochos, F.; Razis, P. A.; Rykaczewski, H.; Finger, M.; Fingera, M., Jr.; Ayala, E.; Jarrin, E. Carrera; Kamel, A. Ellithi; Mahmoud, M. A.; Salama, E.; Bhowmik, S.; De Oliveira, A. Carvalho Antunes; Dewanjee, R. K.; Ehataht, K.; Kadastik, M.; Raidal, M.; Veelken, C.; Eerola, P.; Kirschenmann, H.; Pekkanen, J.; Voutilainen, M.; Havukainen, J.; Heikkila, J. K.; Jarvinen, T.; Karimaki, V; Kinnunen, R.; Lampen, T.; Lassila-Perini, K.; Laurila, S.; Lehti, S.; Linden, T.; Luukka, P.; Maenpaa, T.; Siikonen, H.; Tuominen, E.; Tuominiemi, J.; Tuuva, T.; Besancon, M.; Couderc, F.; Dejardin, M.; Denegri, D.; Faure, J. L.; Ferri, F.; Ganjour, S.; Givernaud, A.; Gras, P.; de Monchenault, G. Hamel; Jarry, P.; Leloup, C.; Locci, E.; Malcles, J.; Negro, G.; Rander, J.; Rosowsky, A.; Sahin, M. O.; Titov, M.; Abdulsalam, A.; Amendola, C.; Antropov, I; Beaudette, F.; Busson, P.; Charlot, C.; de Cassagnac, R. Granier; Kucher, I; Lobanov, A.; Blanco, J. Martin; Perez, C. Martin; Nguyen, M.; Ochando, C.; Ortona, G.; Paganini, P.; Rembser, J.; Salerno, R.; Sauvan, J. B.; Sirois, Y.; Leiton, A. G. Stahl; Zabi, A.; Zghiche, A.; Agram, J-L; Andrea, J.; Bloch, D.; Bourgatte, G.; Brom, J-M; Chabert, E. C.; Cherepanov, V; Collard, C.; Conte, E.; Fontaine, J-C; Gele, D.; Goerlach, U.; Jansova, M.; Le Bihan, A-C; Tonon, N.; Van Hove, P.; Gadrat, S.; Beauceron, S.; Bernet, C.; Boudoul, G.; Chanon, N.; Chierici, R.; Contardo, D.; Depasse, P.; El Mamouni, H.; Fay, J.; Finco, L.; Gascon, S.; Gouzevitch, M.; Grenier, G.; Ille, B.; Lagarde, F.; Laktineh, I. B.; Lattaud, H.; Lethuillier, M.; Mirabito, L.; Perries, S.; Popov, A.; Sordini, V; Touquet, G.; Vander Donckt, M.; Viret, S.; Toriashvili, T.; Tsamalaidze, Z.; Autermann, C.; Feld, L.; Kiesel, M. K.; Klein, K.; Lipinski, M.; Preuten, M.; Rauch, M. P.; Schomakers, C.; Schulz, J.; Teroerde, M.; Wittmer, B.; Albert, A.; Erdmann, M.; Erdweg, S.; Esch, T.; Fischer, R.; Ghosh, S.; Hebbeker, T.; Heidemann, C.; Hoepfner, K.; Keller, H.; Mastrolorenzo, L.; Merschmeyer, M.; Meyer, A.; Millet, P.; Mukherjee, S.; Pook, T.; Pozdnyakov, A.; Radziej, M.; Reithler, H.; Rieger, M.; Schmidt, A.; Teyssier, D.; Thueer, S.; Fluegge, G.; Hlushchenko, O.; Kress, T.; Mueller, T.; Nehrkorn, A.; Nowack, A.; Pistone, C.; Pooth, O.; Roy, D.; Sert, H.; Stahl, A.; Martin, M. Aldaya; Arndt, T.; Asawatangtrakuldee, C.; Babounikau, I; Beernaert, K.; Behnke, O.; Behrens, U.; Martinez, A. Bermudez; Bertsche, D.; Bin Anuar, A. A.; Borras, K.; Botta, V; Campbell, A.; Connor, P.; Contreras-Campana, C.; Danilov, V; De Wit, A.; Defranchis, M. M.; Pardos, C. Diez; Damiani, D. Dominguez; Eckerlin, G.; Eichhorn, T.; Elwood, A.; Eren, E.; Gallo, E.; Geiser, A.; Luyando, J. M. Grados; Grohsjean, A.; Guthoff, M.; Haranko, M.; Harb, A.; Jung, H.; Kasemann, M.; Keaveney, J.; Kleinwort, C.; Knolle, J.; Kruecker, D.; Lange, W.; Lenz, T.; Leonard, J.; Lipka, K.; Lohmann, W.; Mankel, R.; Melzer-Pellmann, I-A; Meyer, A. B.; Meyer, M.; Missiroli, M.; Mittag, G.; Mnich, J.; Myronenko, V; Pflitsch, S. K.; Pitzl, D.; Raspereza, A.; Saibel, A.; Savitskyi, M.; Saxena, P.; Schtze, P.; Schwanenberger, C.; Shevchenko, R.; Singh, A.; Tholen, H.; Turkot, O.; Vagnerini, A.; Van De Klundert, M.; Van Onsem, G. P.; Walsh, R.; Wen, Y.; Wichmann, K.; Wissing, C.; Zenaiev, O.; Aggleton, R.; Bein, S.; Benato, L.; Benecke, A.; Dreyer, T.; Ebrahimi, A.; Garutti, E.; Gonzalez, D.; Gunnellini, P.; Haller, J.; Hinzmann, A.; Karavdina, A.; Kasieczka, G.; Klanner, R.; Kogler, R.; Kovalchuk, N.; Kurz, S.; Kutzner, V; Lange, J.; Marconi, D.; Multhaup, J.; Niedziela, M.; Niemeyer, C. E. N.; Nowatschin, D.; Perieanu, A.; Reimers, A.; Rieger, O.; Scharf, C.; Schleper, P.; Schumann, S.; Schwandt, J.; Sonneveld, J.; Stadie, H.; Steinbrueck, G.; Stober, F. M.; Stoever, M.; Vormwald, B.; Zoi, I; Akbiyik, M.; Barth, C.; Baselga, M.; Baur, S.; Butz, E.; Caspart, R.; Chwalek, T.; Colombo, F.; De Boer, W.; Dierlamm, A.; El Morabit, K.; Faltermann, N.; Freund, B.; Giffels, M.; Harrendorf, M. A.; Hartmann, F.; Heindl, S. M.; Husemann, U.; Katkov, I; Kudella, S.; Mitra, S.; Mozer, M. U.; Mueller, Th; Musich, M.; Plagge, M.; Quast, G.; Rabbertz, K.; Schroeder, M.; Shvetsov, I; Simonis, H. J.; Ulrich, R.; Wayand, S.; Weber, M.; Weiler, T.; Whrmann, C.; Wolf, R.; Anagnostou, G.; Daskalakis, G.; Geralis, T.; Kyriakis, A.; Loukas, D.; Paspalaki, G.; Agapitos, A.; Karathanasis, G.; Kontaxakis, P.; Panagiotou, A.; Papavergou, I; Saoulidou, N.; Vellidis, K.; Kousouris, K.; Papakrivopoulos, I; Tsipolitis, G.; Evangelou, I; Foudas, C.; Gianneios, P.; Katsoulis, P.; Kokkas, P.; Mallios, S.; Manthos, N.; Papadopoulos, I; Paradas, E.; Strologas, J.; Triantis, F. A.; Tsitsonis, D.; Bartok, M.; Csanad, M.; Filipovic, N.; Major, P.; Nagy, M., I; Pasztor, G.; Suranyi, O.; Veres, G., I; Bencze, G.; Hajdu, C.; Horvath, D.; Hunyadi, A.; Sikler, F.; Vami, T. A.; Veszpremi, V.; Vesztergombi, G.; Beni, N.; Czellar, S.; Karancsi, J.; Makovec, A.; Molnar, J.; Szillasi, Z.; Raics, P.; Trocsanyi, Z. L.; Ujvari, B.; Choudhury, S.; Komaragiri, J. R.; Tiwari, P. C.; Bahinipati, S.; Kar, C.; Mal, P.; Mandal, K.; Nayak, A.; Chowdhury, S. Roy; Sahoo, D. K.; Swain, S. K.; Bansal, S.; Beri, S. B.; Bhatnagar, V; Chauhan, S.; Chawla, R.; Dhingra, N.; Gupta, R.; Kaur, A.; Kaur, M.; Kaur, S.; Kumari, P.; Lohan, M.; Meena, M.; Mehta, A.; Sandeep, K.; Sharma, S.; Singh, J. B.; Virdi, A. K.; Walia, G.; Bhardwaj, A.; Choudhary, B. C.; Garg, R. B.; Gola, M.; Keshri, S.; Kumar, Ashok; Malhotra, S.; Naimuddin, M.; Priyanka, P.; Ranjan, K.; Shah, Aashaq; Sharma, R.; Bhardwaj, R.; Bharti, M.; Bhattacharya, R.; Bhattacharya, S.; Bhawandeep, U.; Bhowmik, D.; Dey, S.; Dutt, S.; Dutta, S.; Maity, M.; Mondal, K.; Nandan, S.; Purohit, A.; Rout, P. K.; Roy, A.; Saha, G.; Sarkar, S.; Sarkar, T.; Sharan, M.; Singh, B.; Thakur, S.; Behera, P. K.; Muhammad, A.; Chudasama, R.; Dutta, D.; Jha, V; Kumar, V; Mishra, D. K.; Netrakanti, P. K.; Pant, L. M.; Shukla, P.; Suggisetti, P.; Aziz, T.; Bhat, M. A.; Dugad, S.; Mohanty, G. B.; Sur, N.; Verma, Ravindra Kumar; Banerjee, S.; Chatterjee, S.; Das, P.; Guchait, M.; Jain, Sa; Karmakar, S.; Kumar, S.; Majumder, G.; Mazumdar, K.; Sahoo, N.; Dube, S.; Hegde, V; Kapoor, A.; Kothekar, K.; Pandey, S.; Rane, A.; Rastogi, A.; Chenarani, S.; Tadavani, E. Eskandari; Etesami, S. M.; Khakzad, M.; Najafabadi, M. Mohammadi; Naseri, M.; Hosseinabadi, F. Rezaei; Safarzadeh, B.; Zeinali, M.; Felcini, M.; Grunewald, M.; Abbrescia, M.; Calabria, C.; Colaleo, A.; Creanza, D.; Cristella, L.; De Filippis, N.; De Palma, M.; Di Florio, A.; Errico, F.; Fiore, L.; Gelmi, A.; Iaselli, G.; Ince, M.; Lezki, S.; Maggi, G.; Maggi, M.; Miniello, G.; My, S.; Nuzzo, S.; Pompili, A.; Pugliese, G.; Radogna, R.; Ranieri, A.; Selvaggi, G.; Sharma, A.; Silvestris, L.; Venditti, R.; Verwilligen, P.; Abbiendi, G.; Battilana, C.; Bonacorsi, D.; Borgonovi, L.; Braibant-Giacomelli, S.; Campanini, R.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Chhibra, S. S.; Codispoti, G.; Cuffiani, M.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fontanesi, E.; Giacomelli, P.; Grandi, C.; Guiducci, L.; Iemmi, F.; Lo Meo, S.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Perrotta, A.; Primavera, F.; Rossi, A. M.; Rovelli, T.; Siroli, G. P.; Tosi, N.; Albergo, S.; Di Mattia, A.; Potenza, R.; Tricomi, A.; Tuve, C.; Barbagli, G.; Chatterjee, K.; Ciulli, V; Civinini, C.; D'Alessandro, R.; Focardi, E.; Latino, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Russo, L.; Sguazzoni, G.; Strom, D.; Viliani, L.; Benussi, L.; Bianco, S.; Piccolo, D.; Ferro, F.; Mulargia, R.; Robutti, E.; Tosi, S.; Benaglia, A.; Beschi, A.; Brivio, F.; Ciriolo, V; Di Guida, S.; Dinardo, M. E.; Fiorendi, S.; Gennai, S.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Menasce, D.; Monti, F.; Moroni, L.; Paganoni, M.; Pedrini, D.; Ragazzi, S.; de Fatis, T. Tabarelli; Zuolo, D.; Buontempo, S.; Cavallo, N.; De Iorio, A.; Di Crescenzo, A.; Fabozzi, F.; Fienga, F.; Galati, G.; Iorio, A. O. 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Stefan Meyer Inst Subat Phys SMI, Vienna, Austria; Adiyaman Univ, Adiyaman, Turkey; Istanbul Aydin Univ, Istanbul, Turkey; Mersin Univ, Mersin, Turkey; Piri Reis Univ, Istanbul, Turkey; Gaziosmanpasa Univ, Tokat, Turkey; Ozyegin Univ, Istanbul, Turkey; Izmir Inst Technol, Izmir, Turkey; Marmara Univ, Istanbul, Turkey; Kafkas Univ, Kars, Turkey; Istanbul Univ, Istanbul, Turkey; Istanbul Bilgi Univ, Istanbul, Turkey; Hacettepe Univ, Ankara, Turkey; Univ Southampton, Sch Phys & Astron, Southampton, Hants, England; Monash Univ, Fac Sci, Clayton, Vic, Australia; Bethel Univ, St Paul, MN USA; Karamanoglu Mehmetbey Univ, Karaman, Turkey; Beykent Univ, Istanbul, Turkey; Bingol Univ, Bingol, Turkey; Sinop Univ, Sinop, Turkey; Mimar Sinan Univ, Istanbul, Turkey; Texas A&M Univ Qatar, Doha, Qatar; xKyungpook Natl Univ, Daegu, South Korea; Univ Hyderabad, Hyderabad, India Dutta, Ipsita/JDW-8207-2023; Li, Ruixi/AAE-7585-2022; Gerosa, Raffaele/AGL-6079-2022; Padhi, Saswat/LTF-2060-2024; Caspart, Rene/LNQ-1560-2024; 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Matorras, Francisco/I-4983-2015; Gribushin, Andrei/J-4225-2012; Grynyov, Borys/D-1714-2010; Barnyakov, Alexander/AAZ-8825-2021; Hollar, Jonathan/KZU-8312-2024; Venturi, Andrea/J-1877-2012; Di Crescenzo, Antonia/GVS-4144-2022; Piperov, Stefan/Q-1980-2017; Al-bataineh, Ayman/AAK-1197-2021; Torassa, Ezio/I-1788-2012; Ferro, Fabrizio/HMP-5516-2023; Babaev, Anton/U-5457-2019; Van Remortel, Nick/AGQ-7045-2022; SHARMA, RAM/MIO-2784-2025; LECOQ, Paul/S-7246-2019; Martinez Rivero, Celso/V-6916-2017; Belyaev, Andrey/E-1540-2012; KHAN, Masood/AAA-7384-2020; Bernardes, Cesar Augusto/D-2408-2015; Manganote, Edmilson/K-8251-2013; Wang, Man/AGE-9961-2022; Goy Lopez, Silvia/K-9200-2017; Flix, Josep/G-5414-2012; Kumar, Saroj/AAU-5615-2021; OZOK, FERHAT/A-6803-2018; Novaes, Sergio/D-3532-2012; gomez, marina/I-7072-2012; de la Cruz, Begona/K-7552-2014; Lu, Lu/JPE-5187-2023; candelise, vieri/H-2195-2015; Gonzalez Caballero, Isidro/E-7350-2010; Gu, Chenghong/AAH-1540-2019; Rolandi, Luigi/E-8563-2013; Theofilatos, Konstantinos/AAL-9162-2021; Josa, Isabel/K-5184-2014; Da Silveira, Gustavo Gil/N-7279-2014; Orimoto, Toyoko/D-4759-2016; Felcini, Marta/S-2684-2019; Sagir, Sinan/A-5219-2018; Dewanjee, Dr. Ram Krishna/AFE-3468-2022; Wulz, Claudia-Elisabeth/H-5657-2011; SAHOO, DILLIP/AAA-4724-2022; Pásztor, Gabriella/D-9716-2016; Go, Yeonju/HSH-6030-2023; Pedraza Morales, Maria Isabel/ABC-7289-2021; Shoaib, Muhammad/V-1862-2019; Majumder, Devdatta/X-2542-2019; Fouz Iglesias, Maria Cruz/AAF-1105-2019; Traczyk, Piotr/ABA-8929-2020; Bagliesi, Giuseppe/C-2230-2013; Daskalakis, Georgios/M-4480-2013; Amoroso, Simone/AAW-4334-2021; Gorski, Maciej/AAU-1250-2020; Mrenna, Stephen/KIL-6081-2024; walia, genius/ACL-5617-2022; Nandan, Saswati/JVY-9235-2024; Elkafrawy, Tamer/HPF-5873-2023; Wittich, Peter/HOH-5761-2023; Triossi, Andrea/K-2813-2017; Ince Lezki, Merve/AAG-5283-2021; buotempo, salvatore/B-5210-2012; Hildreth, Michael/LWK-8035-2024; Donato, Silvio/GPK-2262-2022; Malakhov, Alexander/D-5702-2016; Primavera, Federica/KUD-4067-2024; Luo, Wuming/J-4263-2018; Ahmad, Muhammad/LBH-2342-2024; Pérez-Calero Yzquierdo, Antonio/F-2235-2013; Wang, Hui/GLT-7990-2022; Pasztor, Gabriella/D-9716-2016; Mundim, Luiz/A-1291-2012; Poudyal, Nabin/AAA-7981-2020; Orlando, Nicola/AAL-1723-2021; Doğangün, Oktay/AAC-1579-2022; Mignerey, Alice/D-6623-2011; Viliani, Lorenzo/AAU-3462-2021; Singh, J B/IXD-2130-2023; KIM, Tae/P-7848-2015; Sznajder, Andre/L-1621-2016; Bornheim, Adi/L-2750-2019; Malvezzi, Sandra/B-8524-2009; Lohan, Manisha/KVB-3511-2024; Dremin, Igor/K-8053-2015; Mora Herrera, Maria Clemencia/AAD-6466-2021; Li, Qiang/AGK-6990-2022; de Paula Carvalho, Wagner/V-3343-2019; Veckalns, Viesturs/AAZ-3105-2020; de Jesus Damiao, Dilson/G-6218-2012; Sarica, Ulascan/JXY-2829-2024; kangal, evrim/L-8978-2013; Janssen, Xavier/E-1915-2013; My, Salvatore/HTM-1335-2023; Titov, Maxim/JAC-6742-2023; Leonardo, Nuno/M-6940-2016; Voevodina, Elena/AAI-4805-2021; Vischia, Pietro/AAB-7811-2021; Zhu, Ren-Yuan/V-8966-2019; Galati, Giuliana/AAV-8088-2020; KUMAR, ASHOK/AAB-8729-2019; Purohit, Arnab/MSW-1519-2025; Dallavalle, Gaetano Marco/AFW-4654-2022; zhao, jize/AAS-1102-2021; Morovic, Srecko/T-9019-2019; Dhingra, Nitish/ABA-9507-2020; Iorio, Alberto Orso Maria/GXA-0233-2022; Xie, Si/O-6830-2016; Sacchi, Roberto/AGS-7202-2022; Cavallo, Nicola/F-8913-2012; Tytgat, Michael/F-3732-2018; de guio, federico/B-8553-2009; Kraetschmer, Ilse/LSK-3076-2024; Mejia Guisao, Jhovanny/ABG-3627-2021; Moscatelli, Francesco/N-6333-2014; Tinoco Mendes, Andre David/D-4314-2011; Norjoharuddeen, Nurfikri/S-3109-2018; Kyberd, Paul/P-1092-2014; Gennai, Simone/P-2880-2015; Pompili, Alexis/ISU-8813-2023; Blekman, Freya/ABD-7916-2020; Elwood, Adam/GSN-1799-2022; Stahl, Achim/E-8846-2011; Lee, Suhyun/AAA-3368-2022; Jo, Hyon-Suk/HGC-7070-2022; Dewanjee, Ram Krishna/AFE-3468-2022; Xu, Qiao/AAM-9242-2020; Gomez, Gervasio/K-2860-2014; Isildak, Bora/D-8829-2015; Safronov, Grigory/F-8494-2017; Zolkapli, Zukhaimira/AAA-4039-2019; ciocci, maria/I-2153-2015; Skoro, Goran/F-3642-2010; Lychkovskaya, Natalia/F-8341-2017; Csanad, Mate/D-5960-2012; Golubev, Nikolay/L-4131-2017; Azarkin, Maxim/N-2578-2015; Lander, Roddy/KQU-7736-2024; Scodellaro, Luca/K-9091-2014; ALCARAZ MAESTRE, JUAN/I-5763-2015; Behera, Prafulla/AAK-8686-2020; Roy Chowdhury, Suvankar/IXN-7230-2023; Jafari, Abideh/JVP-2320-2024; Pastrone, Nadia/JRZ-0528-2023; My, Salvatore/I-5160-2015; Marco de Lucas, Jesus/B-8735-2008; Dermenev, Alexander/M-4979-2013; , Luo/AAP-8401-2020; d'Enterria, David/W-7763-2019; Gelmi, Amy/D-4456-2012; Varela, Joao/K-4829-2016; Gonzalez Suarez, Rebeca/L-6128-2014; Ranieri, Antonio/E-9545-2015; Elgammal, Sherif/KGM-3809-2024; Everaerts, Pieter/KIE-3686-2024; kaya, mithat/D-8062-2011; SEVINC KAYA, OZLEM/AAE-8069-2020; Guler, Yalcin/AAG-7833-2019; YU, SHIN-SHAN/JPW-8635-2023; SHIRAZI, SHARIF/G-4823-2010; Amendola, Chiara/KCK-3814-2024; Mercadante, Pedro/K-1918-2012; Popov, Vitaliy/C-9925-2016; Tiras, Emrah/ABG-2354-2020; Najafabadi, Mojtaba/AAF-7564-2019; Fouz, Maria Cruz/AAF-1105-2019; Misheva, Mihaela/AEK-6084-2022; Venditti, Rosamaria/IVH-5947-2023; Kovac, Marko/D-5817-2017; González Caballero, Isidro/E-7350-2010; Okhotnikov, Vitalii/O-4293-2017; ., MOHD./AAD-2818-2019; cartiglia, nicolo/ABF-1008-2021; Gonzalez, Jesus David/IAN-5526-2023; yagil, avi/I-3278-2018; Ciangottini, Diego/HJH-5914-2023; D'Hondt, Jorgen/ABD-7930-2020; Montagna, Paolo Maria/AAY-8669-2021; Lezki, Samet/AAG-8277-2019; Ozdemir, Kadri/P-8058-2014; Kozhuharov, Venelin/AAL-1658-2021; GULER, E/AAH-4748-2019; Shchutska, Lesya/M-7052-2017; Creanza, Donato/KIC-8791-2024; Maselli, Silvia/J-1599-2012; Sen, Sercan/C-6473-2014; Milosevic, Jelena/ABG-9850-2020; Albataineh, Ayman Ahmad/AAK-1197-2021; Pavlov, Borislav/O-8491-2018; KAYİS TOPAKSU, Aysel/B-8910-2018; Chen, Fang/JZE-4446-2024; BAT, Ayse/GOK-2363-2022; Kaminskiy, Alexey/AGE-5961-2022; ASILAR, Ece/ABC-4577-2020; Hos, ilknur/T-1165-2019; Smirnov, Vitaly/B-5001-2017; Rabady, Dinyar/GSN-9210-2022; Dorigo, Tommaso/AAY-6673-2020; Strologas, John/GWR-2036-2022; boccali, tommaso/ACT-7600-2022; Heredia De La Cruz, Ivan/L-2610-2018; Manisha, Manisha/KVB-3511-2024; lei, yuan/GXW-0547-2022; Kim, Geuk-Nam/IAO-4628-2023; Kodolova, Olga/IQV-0056-2023; Sandro, Fonseca de Souza/M-8731-2014; Bedoya, Cristina/K-8066-2014; Ivanov, Andrew/A-7982-2013; Gütay, Levent/C-5352-2009; Langenegger, Urs/A-4578-2008; Troshin, Sergey/AAR-8556-2020; Meyer, Manuel/E-2697-2016; Juodagalvis, Andrius/F-6952-2018; Malbouisson, H./N-6733-2015; Di Florio, Adriano/ABA-3631-2020; Gülmez, Erhan/P-9518-2015; Gleyzer, Sergei/AAE-6726-2020; Giammanco, Andrea/O-5017-2019; Sert, H/ABA-5645-2020; Ćirković, Predrag/G-8059-2012; Meridiani, Paolo/ABH-1655-2020; Heredia de la Cruz, Ivan/L-2610-2018; Chaparro Sierra, Luisa/AHD-3083-2022; Della Ricca, Giuseppe/B-6826-2013; Loukas, Dimitris/ABF-1478-2020; Joo, Changwoo/ABI-4034-2020; Garutti, Erika/NRY-4813-2025; Borg, Jacqueline/AFS-8793-2022; Gozalez-Lopez, Oscar/AAH-3533-2019; Obertino, Maria/ABH-1662-2020; Menichelli, Mauro/AAQ-4026-2020; Rivero, Celso/V-6916-2017; Saka, Halil/GPF-8892-2022; Montanari, Alessandro/J-2420-2012; lin, yuan/JXL-9592-2024; Akgun, Bora/AAM-8311-2021; Hernandez Calama, Jose Maria/H-9127-2015; Seidel, Marcus/AAA-4799-2022; Iaydjiev, Plamen/AEB-8785-2022; Martin Perez, Cristina/MEP-9682-2025; Sguazzoni, Giacomo/J-4620-2015; Gregores, Eduardo/F-8702-2012; Tadel, Matevz/H-3204-2016; Palencia Cortezon, Jose Enrique/F-1059-2017; Reyes-Almanza, Rogelio/GQJ-8236-2022; Roguljic, Matej/NMJ-5801-2025; Rout, Prasanna/N-8012-2019; Lowette, Steven/HKV-3341-2023; Hlushchenko, Olena/AAC-8972-2022; Hoh, Siewyan/AAM-9562-2021; Fedi, Giacomo/IRZ-8694-2023; Clements, Emma/HSG-3424-2023; Abbrescia, Marcello/HTN-5367-2023; Waltenberger, Wolfgang/H-9330-2018; Melo da Costa, Eliza/AAX-2394-2021; Palla, Fabrizio/F-4727-2012; Wimpenny, Stephen/K-8848-2013; Amapane, Nicola/HDN-9630-2022; Aarrestad, Thea/GLV-3031-2022; ozok, ferhat/A-6803-2018; De La Cruz Burelo, Eduard/AAR-9103-2021; Di Mattia, Alessandro/HNQ-0365-2023; KARA, Ozgun/MCY-5689-2025; Bilican, Fuat/AGD-3089-2022; Canelli, Florencia/AAI-1616-2021; Meijers, Femke/IUM-7952-2023; Zhang, Jixie/A-1461-2016; Krammer, Manfred/A-6508-2010; Sen, S./C-6473-2014; Paganis, Stathes/J-8413-2017; Ling, Ting/J-9131-2018; Perez-Calero Yzquierdo, Antonio/F-2235-2013; Lokhtin, Igor/D-7004-2012; Fasanella, Daniele/ABD-9759-2020; Majumder, Gobinda/MTB-7852-2025; Hobson, Peter/C-8919-2016; Soffi, Livia/HSC-0774-2023; Radogna, Raffaella/I-1033-2014; Salvatico, Riccardo/JAO-1069-2023; Kirakosyan, Martin/N-2701-2015; Fiorendi, Sara/ABA-3311-2021; Rodríguez, Manel/C-2539-2017; Tomei, Thiago/E-7091-2012; Neumeister, Norbert/JXN-1675-2024; Lee, Jason/B-9701-2014; Benaglia, Andrea/AGF-5495-2022; Nguyen, Thong/JHS-8911-2023; Cimmino, Anna/AAA-1673-2020; Cipriani, Marco/MHU-3780-2025; Dordevic, Milos/HSH-8083-2023; Faccioli, Pietro/AAF-1499-2019; Sanchez-Hernandez, Alberto/L-4955-2017; Tcherniaev, Evgueni/G-3453-2016; WANG, YING/JLM-9219-2023; Seo, Seon/K-9250-2014; Ozkorucuklu, Suat/AAE-7535-2020; zhang, shiju/GWV-2688-2022; Redondo, Ignacio/K-8639-2014; Skovpen, Kirill/HKM-3974-2023; Fernandez Menendez, Javier/B-6550-2014; Hall-Wilton, Richard/U-6918-2019; Saoulidou, Niki/AAA-2891-2020; Doroba, krzysztof/AAA-3419-2021; Battilana, Carlo/AAA-7345-2020; Bermudez Martinez, Armando/HHN-4625-2022; SIMSEK, Ali Eren/AFO-3050-2022; Ryutin, Roman/P-3615-2015; Yalvac, Metin/LYP-1776-2024; Khakzad, Mohsen/ABB-1945-2021; Rabadan Trejo, Raul Iraq/F-7924-2019; Aushev, Tagir/AAN-9735-2020; Sanchez, Federico/F-5809-2012; Abdulsalam, Abdulla/B-3386-2019; Josa Mutuberria, Isabel/K-5184-2014; Ragazzi, Stefano/D-2463-2009; Geralis, Theodoros/I-6467-2016; Duarte, Javier/AAA-5414-2020; Bouhali, Othmane/JXM-3572-2024; Luukka, Panja-Riina/S-8956-2018; Paulini, Manfred/N-7794-2014; tosi, mia/J-5777-2012; Zeyrek, Mehmet/ABA-7235-2020; Karancsi, János/A-9710-2013; Latino, Giuseppe/AAE-7434-2019; Benussi, Luigi/O-9684-2014; Amiss, Anna/AAB-2424-2020; Fernandez Perez Tomei, Thiago Rafael/E-7091-2012; Obraztsov, Stepan/E-1895-2012; Arcidiacono, Roberta/ABF-3918-2020; Organtini, Giovanni/D-3990-2009; Pinna, Daniele/AAF-4490-2021; Hoorani, Hafeez/D-1791-2013; Marinelli, Nancy/MCJ-3716-2025; Venditti, Rosamaria/I-1030-2014; Moon, Chang-Seong/J-3619-2014; Castilla-Valdez, Heriberto/F-8906-2019; Shmatov, Sergei/J-5621-2014; Yetkin, E. Asli/AAQ-8732-2020; Fiori, Francesco/H-1454-2018; Biino, Cristina/AAF-1585-2020; Trocino, Daniele/AGI-2155-2022; Aimè, Chiara/GXG-4131-2022; Shah, Aashaq/GYI-8983-2022; Kalsi, Amandeep Kaur/JNR-9607-2023; Asawatangtrakuldee, Chayanit/GLS-1465-2022; Ligabue, Franco/F-3432-2014; Chang, Philip/AAN-3350-2021; Lannon, Kevin/HGU-5755-2022; Rames, Jiri/H-2450-2014; Bilki, Burak/GRF-5072-2022; staiano, amedeo/KVB-8364-2024; Bourilkov, Dimitri/AAO-4908-2020; da Cruz e Silva, Cristóvão/KVA-3786-2024; Calligaris, Luigi/K-2018-2017; TUVE', Cristina/P-3933-2015; De Iorio, Agostino/HJH-7155-2023; Ghezzi, Alessio/I-9494-2012; Masciovecchio, Mario/IXD-8018-2023; Kratschmer, Ilse/LSK-3076-2024; celik, Ali/A-3563-2019; Ozturk, Sertac/AGO-2476-2022; Reis, Tomas/JHS-4868-2023; MAESTRE, JUAN/I-5763-2015; Bainbridge, Robert/JRW-6150-2023; Snoeys, Walter/K-8259-2015; Raidal, Martti/F-4436-2012; Martinelli, Maurizio/AAC-8282-2021; Arneodo, Michele/ABF-7197-2020; Camporesi, Tiziano/F-8307-2013; Ahmad, Ashfaq/ABJ-8366-2022; Verwilligen, Piet/AAA-8819-2019; Jeitler, Manfred/H-3106-2012; Ciulli, Vitaliano/ABC-5440-2020; AbuZeid, Shimaa/AAC-9872-2021; Lu, Wang/JVO-0416-2024; chen, gang/JRX-1197-2023; Spagnolo, Paolo/G-3401-2017; Brandt, Steven/AGV-6975-2022; Roy, Ashim/HLV-9248-2023; Rodrigo, Teresa/F-6183-2018; D'Alessandro, Raffaello/F-5897-2015; Chaparro Sierra, Luisa Fernanda/AHD-3083-2022; Colaleo, Anna/HSG-1637-2023; Konecki, Marcin/G-4164-2015; li, yan/ITU-9719-2023; Cortabitarte, Rocio/P-8480-2014; KUMAR, ASHOK/AAF-4055-2021; Hoh, Siew Yan/AAM-9562-2021; Colafranceschi, Stefano/M-1807-2016; Grandi, Claudio/B-5654-2015; Ulrich, Ralf/Q-3882-2019; Shukla, Prashant/MZS-4135-2025; Chernyavskaya, Nadezda/F-2161-2015; Wang, James/JAD-0675-2023; Perieanu, Adrian/D-3347-2018; Tumasyan, Armen/P-3390-2015; Liu, Meng/GRF-0962-2022; Mohammadi Najafabadi, Mohammad/GLR-0213-2022; Rolandi, Luigi (Gigi)/E-8563-2013; Sarkar, Debojit/GNW-6585-2022; Quijada, Javier/AAS-4234-2021; Ferencek, Dinko/G-6411-2015; Calderon, Alicia/K-3658-2014; Sun, Mingkang/NGS-8788-2025; Wang, Shaohui/HKO-6774-2023; Barria, Patrizia/AAT-3894-2020; Delgado Peris, Antonio/AAA-5165-2019; Agaras, Merve/AAB-5221-2021; Kadastik, Mario/B-7559-2008; Gokbulut, Gul/G-2141-2018; Lee, Jeongeun/IYJ-2550-2023; Mohammadi Najafabadi, Mojtaba/HLH-5741-2023; Andreev, Vladimir/M-8665-2015; Sculac, Toni/AAE-4141-2019; Demiroglu, Zuhal Seyma/A-5168-2016; ABDULLAH, WAN/B-5439-2010; de Souza Sandro, Fonseca/ABB-8505-2020; Menasce, Dario/A-2168-2016; Malik, Sudhir/D-6621-2018; del Arbol, Pablo/Z-4358-2019; Maier, Benedikt/AAN-1929-2021; Marlow, Daniel/C-9132-2014; Buchanan, James/ABB-6906-2021; GURPINAR GULER, EMINE/V-2170-2018; Demiragli, Zeynep/IZE-1919-2023; tsamalaidze, zviadi/U-6949-2019; Ahuja, Sudha/I-4097-2014; Mahmoud, Mohammed/AAD-1249-2019; Goh, Junghwan/Q-3720-2016; Gil Da Silveira, Gustavo/N-7279-2014; Paramatti, Riccardo/IXW-6363-2023; Kapoor, Aakanksha Rajiv/KAM-5986-2024; ASILAR, Ece/KEI-3075-2024; Salerno, Roberto/A-7509-2010; Kumar, Vijay/G-4290-2011; Pinna Angioni, Gian Luca/AAZ-6834-2021; Chinellato, Jose/I-7972-2012; Wadud, Dr. Mohammad A./AAR-2288-2020; Cepeda, María/HNO-9314-2023; Soares, Mara/GZM-6676-2022; celik, Ali/K-6506-2019; Hegeman, Jeroen/HJA-1005-2022; Bonacorsi, Daniele/F-1505-2014; Rovelli, Tiziano/K-4432-2015; Bunkowski, Karol/KOD-1567-2024; Asavapibhop, Burin/X-1477-2019; Suarez, Rebeca/L-6128-2014; Cocoros, Alice/AAA-6661-2021; Govoni, Pietro/K-9619-2016; Dai, Yuxiang/JGC-6867-2023; Minafra, Nicola/AAZ-6781-2020; Missiroli, Marino/AAA-9072-2021; Bortignon, Pierluigi/AAF-6561-2020; Rossi, Andrea/AGH-4546-2022; Sunar Cerci, Deniz/AHE-1706-2022; Finco, Linda/AAH-3618-2019; Zeinali, Mansoor/AIE-9927-2022; Marin, Jose/K-6412-2014; Boos, Eduard/D-9748-2012; Paktinat Mehdiabadi, Saeid/AAY-8501-2020; Duarte-Campderros, Jordi/F-5025-2018; da Cruz e Silva, Cristovao/K-7229-2013; Calderon, Dr. Alicia/K-3658-2014; Ganjour, Serguei/D-8853-2011; Anampa, Kenyi/GPX-8479-2022; Bartosik, Nazar/ABF-2326-2020; Tuominen, Eija/A-5288-2017; 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35227990900; 56181581800; 55324049300 PHYSICAL REVIEW C PHYS REV C 2469-9985 2469-9993 101 1 SCIE PHYSICS, NUCLEAR 2020 3.296 23.7 0.76 2025-06-25 13 17 SIDE ANGULAR-CORRELATIONS; PB-PB COLLISIONS; LONG-RANGE; FLOW; COLLECTIVITY; PROTON English 2020 2020-01-23 10.1103/physrevc.101.014912 바로가기 바로가기 바로가기 바로가기
Article Spectroscopic study and energy transfer behavior of Gd³⁺ to Dy³⁺ for Li2O-MgO-Gd2O3-B2O3-Dy2O3 glasses for white emission material The present study reports the Gd3+-sensitized Dy3+ luminescence and energy-transfer phenomenon, occurring in (B2O3)(0.55-x)(Li2O)(0.30)(MgO)(0.10)(Gd2O3)(0.05) (DY203)x glasses, quenched by high-temperature melting. We study the Judd-Ofelt (JO) intensity parameters and radiative properties, determined by the absorption and emission spectra. The photoluminescence excitation of the Dy3+ at lambda(em) = 575 nm shows the existence of Gd3+ peaks (275 nm and 312 nm) while the emission spectra of the glasses reveal that among the four observed Dy3+ characteristics emissions (482 nm, 575 nm, 663 nm and 753 nm), only the 2, em = 575 nm enhances due to the excitation of the 4f(7) state of the Gd3+ at (lambda(exc) = 275 nm, an indicative of the effective energy transfer (ET) from the Gd3+ to the 4f-4f electric-dipole transition of the Dy3+ . The ET predicts the sensitizer's luminescence decay and activator's luminescence growth, given the fact that an efficient yellow luminescence originates from the activtor's emitting centers. We determine the key parameters such as energy transfer efficiencies, transfer probabilities and average donor-acceptor distance by measuring the lifetimes from the sensitizer Gd3+ ions (lambda(exc) = 275 nm and lambda(em) = 312 nm) and the activator Dy3+ ions (lambda(exc) = 388 nm and lambda(em) = 575 nm). In addition, by using the Inokuti -Hirayama (IH) model, we find that the nature of the mechanism of the energy transfer between the Gd3+ and Dy(3+ )ions is predominantly the non-radiative phonon-assisted electric dipole-dipole. Lifetime of the samples decreases with increasing Dy3+ content (lambda(exc) = 388 nm and lambda(em) = 575 nm) which shows the resonance energy transfer (RET) within the Dy3+. This proposes that the luminescence and the energy transfer between the Gd3+ and the Dy3+ can be boosted up in the host glass, crucial for the persistent luminescence and spectral conversion/ modification. The CIE color coordinates and CCT suggest that the present glasses are useful for white-light emission. Ullah, I.; Shah, S. K.; Rooh, G.; Srisittipokakun, N.; Khan, A.; Kaewkhao, J.; Kim, H. J.; Kothan, S. Abdul Wali Khan Univ, Dept Phys, Mardan 23200, Pakistan; Nakhon Pathom Rajabhat Univ, Ctr Excellence Glass Technol & Mat Sci CEGM, Nakhon Pathom 73000, Nakhon Pathom, Thailand; Nakhon Pathom Rajabhat Univ, Phys Program, Fac Sci & Technol, Nakhon Pathom 73000, Nakhon Pathom, Thailand; Kyungpook Natl Univ, Dept Phys, Deagu 702701, South Korea; Chiang Mai Univ, Fac Associated Med Sci, Dept Radiol Technol, Ctr Radiat Res & Med Imaging, Chiang Mai 50200, Thailand Khan, Ajmal/GVS-9086-2022; Shah, Said Karim/AAC-4343-2020; Rooh, Gul/AAF-2076-2019 57224840417; 50661929900; 24401665700; 35365411300; 57199715763; 23974520300; 59051568100; 6507017165 jakrapong@webmail.npru.ac.th;suchart.kothan@cmu.ac.th; JOURNAL OF LUMINESCENCE J LUMIN 0022-2313 1872-7883 226 SCIE OPTICS 2020 3.599 23.7 1.85 2025-06-25 33 35 Borate glasses; Gadolinium; Dysprosium; Enhanced luminescence; Energy transfer efficiency BORATE GLASSES; LUMINESCENCE PROPERTIES; LIGHT GENERATION; GDAL3(BO3)(4) PHOSPHORS; OPTICAL-PROPERTIES; LITHIUM BORATE; IONS; LASER; PHOTOLUMINESCENCE; SM3+ Borate glasses; Dysprosium; Energy transfer efficiency; Enhanced luminescence; Gadolinium Dysprosium compounds; Electric excitation; Emission spectroscopy; Excited states; Glass; Ions; Luminescence; Magnesia; Spectroscopic analysis; Absorption and emission spectra; Electric dipole transition; Energy transfer efficiency; High-temperature melting; Persistent luminescence; Photo-luminescence excitation; Resonance energy transfer; Spectroscopic studies; Energy transfer English 2020 2020-10 10.1016/j.jlumin.2020.117380 바로가기 바로가기 바로가기 바로가기
Article Strange hadron production in pp and pPb collisions at √sNN=5.02 TeV The transverse momentum (pT) distributions of Lambda, Xi(-), and Omega(-) baryons, their antiparticles, and K-S(0) mesons are measured in proton-proton (pp) and proton-lead (pPb) collisions at a nucleon-nucleon center-of-mass energy of 5.02 TeV over a broad rapidity range. The data, corresponding to integrated luminosities of 40.2 nb(-1) and 15.6 mu b(-1) for pp and pPb collisions, respectively, were collected by the CMS experiment. The nuclear modification factor R-pPb, which is defined as the ratio of the particle yield in pPb collisions and a scaled pp reference, is measured for each particle. A strong dependence on particle species is observed in the pT range from 2 to 7 GeV, where R-pPb for K-S(0) is consistent with unity, while an enhancement ordered by strangeness content and/or particle mass is observed for the three baryons. In pPb collisions, the strange hadron production is asymmetric about the nucleon-nucleon center-of-mass rapidity. Enhancements, which depend on the particle type, are observed in the direction of the Pb beam. The results are compared with predictions from EPOS LHC, which includes parametrized radial flow. The model is in qualitative agreement with the R-pPb data, but fails to describe the dependence on particle species in the yield asymmetries measured away from midrapidity in pPb collisions. Sirunyan, A. M.; Tumasyan, A.; Adam, W.; Ambrogi, F.; Asilar, E.; Bergauer, T.; Brandstetter, J.; Dragicevic, M.; Eroe, J.; Del Valle, A. Escalante; Flechl, M.; Fruehwirth, R.; Ghete, V. M.; Hrubec, J.; Jeitler, M.; Krammer, N.; Kraetschmer, I.; Liko, D.; Madlener, T.; Mikulec, I.; Rad, N.; Rohringer, H.; Schieck, J.; Schoefbeck, R.; Spanring, M.; Spitzbart, D.; Taurok, A.; Waltenberger, W.; Wittmann, J.; Wulz, C. -E.; Zarucki, M.; Chekhovsky, V.; Mossolov, V.; Gonzalez, J. Suarez; De Wolf, E. A.; Di Croce, D.; Janssen, X.; Lauwers, J.; Pieters, M.; Van De Klundert, M.; Van De Klundert, M.; Van Haevermaet, H.; Van Mechelen, P.; Van Remortel, N.; Abu Zeid, S.; Blekman, F.; D'Hondt, J.; De Bruyn, I.; De Clercq, J.; Deroover, K.; Flouris, G.; Lontkovskyi, D.; Lowette, S.; Marchesini, I.; Moortgat, S.; Moreels, L.; Python, Q.; Skovpen, K.; Tavernier, S.; Van Doninck, W.; Van Mulders, P.; Van Parijs, I.; Beghin, D.; Bilin, B.; Brun, H.; Clerbaux, B.; De Lentdecker, G.; Delannoy, H.; Dorney, B.; Fasanella, G.; Favart, L.; Goldouzian, R.; Grebenyuk, A.; Kalsi, A. 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D.; Maier, B.; Marini, A. C.; Mcginn, C.; Mironov, C.; Narayanan, S.; Niu, X.; Paus, C.; Roland, C.; Roland, G.; Stephans, G. S. F.; Sumorok, K.; Tatar, K.; Velicanu, D.; Wang, J.; Wang, T. W.; Wyslouch, B.; Zhaozhong, S.; Benvenuti, A. C.; Chatterjee, R. M.; Evans, A.; Hansen, P.; Kalafut, S.; Kubota, Y.; Lesko, Z.; Mans, J.; Ruckstuhl, N.; Rusack, R.; Turkewitz, J.; Wadud, M. A.; Acosta, G.; Oliveros, S.; Avdeeva, E.; Bloom, K.; Claes, D. R.; Fangmeier, C.; Golf, F.; Suarez, R. Gonzalez; Kamalieddin, R.; Kravchenko, I.; Monroy, J.; Siado, J. E.; Snow, G. R.; Stieger, B.; Godshalk, A.; Harrington, C.; Iashvili, I.; Kharchilava, A.; Mclean, C.; Nguyen, D.; Parker, A.; Rappoccio, S.; Roozbahani, B.; Alverson, G.; Barberis, E.; Freer, C.; Hortiangtham, A.; Morse, D. M.; Orimoto, T.; De Lima, R. Teixeira; Wamorkar, T.; Wang, B.; Wisecarver, A.; Wood, D.; Bhattacharya, S.; Charaf, O.; Hahn, K. A.; Mucia, N.; Odell, N.; Schmitt, M. 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F.; Sun, J.; Wang, F.; Xiao, R.; Xie, W.; Cheng, T.; Dolen, J.; Parashar, N.; Chen, Z.; Ecklund, K. M.; Freed, S.; Geurts, F. J. M.; Kilpatrick, M.; Li, W.; Michlin, B.; Padley, B. P.; Roberts, J.; Rorie, J.; Shi, W.; Tu, Z.; Zabel, J.; Zhang, A.; Bodek, A.; de Barbaro, P.; Demina, R.; Duh, Y. t.; Dulemba, J. L.; Fallon, C.; Ferbel, T.; Galanti, M.; Garcia-Bellido, A.; Han, J.; Hindrichs, O.; Khukhunaishvili, A.; Lo, K. H.; Tan, P.; Taus, R.; Verzetti, M.; Agapitos, A.; Chou, J. P.; Gershtein, Y.; Espinosa, T. A. Gomez; Halkiadakis, E.; Heindl, M.; Hughes, E.; Kaplan, S.; Elayavalli, R. Kunnawalkam; Kyriacou, S.; Lath, A.; Montalvo, R.; Nash, K.; Osherson, M.; Saka, H.; Salur, S.; Schnetzer, S.; Sheffield, D.; Somalwar, S.; Stone, R.; Thomas, S.; Thomassen, P.; Walker, M.; Delannoy, A. 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E.; Poudyal, N.; Sturdy, J.; Thapa, P.; Zaleski, S.; Brodski, M.; Buchanan, J.; Caillol, C.; Carlsmith, D.; Dasu, S.; Dodd, L.; Gomber, B.; Grothe, M.; Herndon, M.; Herve, A.; Hussain, U.; Klabbers, P.; Lanaro, A.; Long, K.; Loveless, R.; Ruggles, T.; Savin, A.; Smith, N.; Smith, W. H.; Woods, N. 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Deutch Elektronen Synchrotron, Hamburg, Germany; Univ Hamburg, Hamburg, Germany; Karlsruher Inst Technol, Karlsruhe, Germany; INPP, NCSR Demokritos, Aghia Paraskevi, Greece; Natl & Kapodistrian Univ Athens, Athens, Greece; Natl Tech Univ Athens, Athens, Greece; Univ Ioannina, Ioannina, Greece; Eotvos Lorand Univ, MTA ELTE Lendulet CMS Particle & Nucl Phys Grp, Budapest, Hungary; Wigner Res Ctr Phys, Budapest, Hungary; Inst Nucl Res ATOMKI, Debrecen, Hungary; Univ Debrecen, Inst Phys, Debrecen, Hungary; Indian Inst Sci IISc, Bangalore, Karnataka, India; Natl Inst Sci Educ Res, HBNI, Bhubaneswar, Orissa, India; Panjab Univ, Chandigarh, India; Univ Delhi, Delhi, India; Saha Inst Nucl Phys, HBNI, Kolkata, India; Indian Inst Technol Madras, Madras, Tamil Nadu, India; Bhabha Atom Res Ctr, Mumbai, Maharashtra, India; Tata Inst Fundamental Res A, Mumbai, Maharashtra, India; Tata Inst Fundamental Res B, Mumbai, Maharashtra, India; IISER, Pune, Maharashtra, India; Inst Res Fundamental Sci IPM, Tehran, Iran; 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56437697200; 56448208700; 59395369400; 58632653700; 56501784000; 59395375000; 35356052000; 58632153800; 55286440200; 26221515900; 55286336800; 56893518800; 56681811000; 35222178600; 35227973900; 57188680248; 57220521234; 57205536163; 55350384900; 15755021800; 56973389300; 55225629800; 35227159700; 37048454000; 57043822800; 35227367700; 57202847289; 56681723400; 23987261700; 56447682200; 54393915800; 55795646500; 55203009000; 56352741400; 36054045000; 12758816400; 57217797874; 35221473300; 29767447800; 35227512400; 56681986300; 57205307086; 57199997802; 55095942200; 56682022400; 9276392600; 7101904491; 24376473600; 56682068800; 55134092500; 7005485775; 36170873500; 56924477700; 57216998199; 55383414600; 7102931559; 37051309800; 57220064097; 7004188390; 57195978651; 6701436560; 35274582500; 57202522344; 57220064080; 57220064314; 35227503800; 59643428100; 35227736500; 57216597785; 57220064351; 57220064259; 57220064396; 57203514331; 57199996011; 35222476000; 57206353679; 57194775056; 36443322800; 16226119300; 55951354400; 35356070900; 35227050000; 56414432900; 47960970300; 35313880900; 35308730700; 8984617000; 57189693933; 7006404363; 14630507400; 7201657574; 7003879901; 56681978600; 36123824900; 58601492400; 35227990900; 56181581800 PHYSICAL REVIEW C PHYS REV C 2469-9985 2469-9993 101 6 SCIE PHYSICS, NUCLEAR 2020 3.296 23.7 0.76 2025-06-25 14 17 TRANSVERSE-MOMENTUM; PARTICLE-PRODUCTION; NUCLEAR MODIFICATION; RAPIDITY DEPENDENCE; JET PRODUCTION; PB COLLISIONS; MULTIPLICITY English 2020 2020-06-22 10.1103/physrevc.101.064906 바로가기 바로가기 바로가기 바로가기
Article Anti-reflux Surgery Versus Proton Pump Inhibitors for Severe Gastroesophageal Reflux Disease: A Cost-Effectiveness Study in Korea Background/Aims The economic burden for gastroesophageal reflux disease (GERD) has recently increased in Asian countries. This study investigates the cost-effectiveness between anti-reflux surgery and medication, with proton pump inhibitors (PPIs) for GERD in Korea. Methods We used a decision tree and Markov model to obtain the costs and quality-adjusted life years (QALYs) of the surgical and medical strategies. Our target cohort was the severe GERD patients aged 50 years old who required a continuous double dose of PPIs. The time horizon was 10 years and all estimates were discounted at 5% per year. The incremental cost-effectiveness ratio of the anti-reflux surgery compared with medication with PPIs was calculated. Sensitivity analyses were performed on all relevant variables. Results The cost-utility analysis indicated anti-reflux surgery was more cost-effective than medication among severe GERD patients over a 10-year period. The model predicted that the surgical strategy had a cost savings of $551 and the QALYs had a gain of 1.18 as compared with the medical strategy. The break-even point in costs of the anti-reflux surgery over the medication was estimated to be 9 years. Sensitivity analyses using the varying parameter assumptions demonstrated the robustness of the study results. Conclusions This study showed anti-reflux surgery was less expensive and more effective therapy over the PPI medication after 9 years of follow-up. This suggests the surgical strategy is a cost-effective alternative to PPI medication among patients who need long-term management for GERD in Korea. Park, Susan; Park, Sungsoo; Park, Joong-Min; Ryu, Soorack; Hwang, Jinseub; Kwon, Jin-Won; Seo, Kyung Won Kyungpook Natl Univ, Coll Pharm, 80 Daehak Ro, Daegu 41566, South Korea; Kyungpook Natl Univ, Res Inst Pharmaceut Sci, 80 Daehak Ro, Daegu 41566, South Korea; Korea Univ, Dept Surg, Coll Med, Seoul, South Korea; Chung Ang Univ, Dept Surg, Coll Med, Seoul, South Korea; Daegu Univ, Div Math & Big Data Sci, Daegu, South Korea; Kosin Univ, Dept Surg, Coll Med, 262 Gamcheon Ro, Busan 49267, South Korea ; Park, Susan/JRY-5671-2023; Park, Sun-Young/B-4634-2014; 박, 중민/GMW-4506-2022 57964951700; 57187346700; 14030287200; 57201899125; 57189231296; 16202951700; 55436089700 jwkwon@knu.ac.kr;kwseo@kosin.ac.kr; JOURNAL OF NEUROGASTROENTEROLOGY AND MOTILITY J NEUROGASTROENTEROL 2093-0879 2093-0887 26 2 SCIE CLINICAL NEUROLOGY;GASTROENTEROLOGY & HEPATOLOGY 2020 4.924 23.8 0.75 2025-06-25 14 15 Quality-adjusted life years; Cost of illness; Gastroesophageal reflux disease; Proton pump inhibitors LAPAROSCOPIC NISSEN FUNDOPLICATION; MEDICATION USE; FOLLOW-UP; MANAGEMENT; ESOPHAGITIS; PREVALENCE; SYMPTOMS; THERAPY; UTILITY; GUIDELINES Cost of illness; Gastroesophageal reflux disease; Proton pump inhibitors; Quality-adjusted life years dexlansoprazole; esomeprazole; ilaprazole; lansoprazole; omeprazole; pantoprazole; proton pump inhibitor; rabeprazole; adult; antireflux operation; Article; controlled study; cost control; cost effectiveness analysis; cost utility analysis; drug cost; economic evaluation; follow up; gastroesophageal reflux; human; intermethod comparison; Korea; Markov chain; quality adjusted life year; sensitivity analysis; surgical mortality English 2020 2020-04 10.5056/jnm19188 바로가기 바로가기 바로가기 바로가기
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WoS Web of Science. Clarivate Analytics에서 제공하는 학술 데이터베이스입니다. 해당 논문이 WoS에 수록되어 있는지 여부를 표시합니다 (○: 수록됨).
SCOPUS Elsevier에서 제공하는 세계 최대 규모의 초록 및 인용 데이터베이스입니다. 해당 논문이 SCOPUS에 수록되어 있는지 여부를 표시합니다 (○: 수록됨).
Document Type 문헌의 유형을 나타냅니다. Article(원저), Review(리뷰), Proceeding Paper(학회논문), Editorial Material(편집자료), Letter(레터) 등으로 분류됩니다.
Title 논문의 제목입니다.
Abstract 논문의 초록(요약)입니다. 연구의 목적, 방법, 결과, 결론을 간략히 요약한 내용입니다.
Authors 논문의 저자 목록입니다. 공동 저자가 여러 명인 경우 세미콜론(;)으로 구분됩니다.
Affiliation 저자들의 소속 기관 정보입니다. 대학, 연구소, 기업 등 저자가 소속된 기관명이 표시됩니다.
ResearcherID (WoS) Web of Science의 고유 연구자 식별번호입니다. 동명이인을 구분하고 연구자의 업적을 정확하게 추적할 수 있습니다.
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Journal 논문이 게재된 학술지의 정식 명칭입니다.
JCR Abbreviation Journal Citation Reports에서 사용하는 저널의 공식 약어입니다. 저널을 간략하게 표기할 때 사용됩니다.
ISSN International Standard Serial Number. 국제표준연속간행물번호로, 인쇄본 저널에 부여되는 고유 식별번호입니다.
eISSN Electronic ISSN. 전자 버전 저널에 부여되는 고유 식별번호입니다.
Volume 저널의 권(Volume) 번호입니다. 보통 연도별로 하나의 권이 부여됩니다.
Issue 저널의 호(Issue) 번호입니다. 한 권 내에서 여러 호로 나누어 출판되는 경우가 많습니다.
WoS Edition Web of Science의 에디션입니다. SCIE(Science Citation Index Expanded), SSCI(Social Sciences Citation Index), AHCI(Arts & Humanities Citation Index) 등으로 구분됩니다.
WoS Category Web of Science의 주제 분류 카테고리입니다. 저널과 논문이 속한 학문 분야를 나타냅니다.
JCR Year 해당 저널의 JCR(Journal Citation Reports) 지표가 산출된 연도입니다.
IF (Impact Factor) 저널 영향력 지수. 최근 2년간 발표된 논문이 해당 연도에 평균적으로 인용된 횟수를 나타냅니다. 저널의 학술적 영향력을 나타내는 대표적인 지표입니다.
JCR (%) 해당 카테고리에서 저널이 위치하는 상위 백분율입니다. 값이 낮을수록 우수한 저널임을 의미합니다 (예: 5%는 상위 5%를 의미).
FWCI Field-Weighted Citation Impact. 분야별 가중 인용 영향력 지수입니다. 논문이 받은 인용을 동일 분야, 동일 연도, 동일 문헌 유형의 평균과 비교한 값입니다. 1.0이 평균이며, 1.0보다 높으면 평균 이상의 인용을 받았음을 의미합니다.
FWCI UpdateDate FWCI 값이 마지막으로 업데이트된 날짜입니다. FWCI는 인용이 누적됨에 따라 주기적으로 업데이트됩니다.
WOS Citation Web of Science에서 집계된 해당 논문의 총 인용 횟수입니다.
SCOPUS Citation SCOPUS에서 집계된 해당 논문의 총 인용 횟수입니다.
Keywords (WoS) 저자가 논문에서 직접 지정한 키워드입니다. Web of Science에 등록된 저자 키워드 목록입니다.
KeywordsPlus (WoS) Web of Science에서 자동으로 추출한 추가 키워드입니다. 논문의 참고문헌 제목에서 자주 등장하는 단어들로 생성됩니다.
Keywords (SCOPUS) 저자가 논문에서 직접 지정한 키워드입니다. SCOPUS에 등록된 저자 키워드 목록입니다.
KeywordsPlus (SCOPUS) SCOPUS에서 자동으로 추출하거나 추가한 색인 키워드입니다.
Language 논문이 작성된 언어입니다. 대부분 English이며, 그 외 다양한 언어로 작성된 논문이 포함될 수 있습니다.
Publication Year 논문이 출판된 연도입니다.
Publication Date 논문의 정확한 출판 날짜입니다 (년-월-일 형식).
DOI Digital Object Identifier. 디지털 객체 식별자로, 논문을 고유하게 식별하는 영구적인 식별번호입니다. 이를 통해 논문의 온라인 위치를 찾을 수 있습니다.