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| ○ | ○ | Article | Search for the decay B⁰ → K*⁰τ⁺τ⁻ at the Belle experiment | This paper presents a search for the rare flavor-changing neutral current process B-0 -> K*(0)tau(+)tau(-) using data taken with the Belle detector at the KEKB asymmetric energy e(+)e(-) collider. The analysis is based on the entire Gamma(4S) resonance data sample of 711 fb(-1), corresponding to 772 x 10(6) B (B) over bar pairs. In our search we fully reconstruct the companion B meson produced in the process e(+)e(-) -> Gamma(4S)-> B (B) over bar from its hadronic decay modes, and look for the decay B-0 -> K-*0 tau(+)tau(-) in the rest of the event. No evidence for a signal is found. We report an upper limit on the branching fraction B(B-0 -> K*(0)tau(+)tau(-) ) K*(0)tau(+)tau(-) ). | Dong, T. V.; Luo, T.; Adachi, I.; Aihara, H.; Asner, D. M.; Atmacan, H.; Aulchenko, V.; Aushev, T.; Ayad, R.; Babu, V.; Bahinipati, S.; Behera, P.; Belous, K.; Bernlochner, F.; Bessner, M.; Bhuyan, B.; Bilka, T.; Biswal, J.; Bobrov, A.; Bozek, A.; Bracko, M.; Branchini, P.; Browder, T. E.; Budano, A.; Campajola, M.; Cervenkov, D.; Chang, M. -C.; Chang, P.; Chen, A.; Cheon, B. G.; Chilikin, K.; Cho, H. E.; Cho, K.; Cho, S. -J.; Choi, S. -K.; Choi, Y.; Choudhury, S.; Cinabro, D.; Cunliffe, S.; Czank, T.; Das, S.; De Nardo, G.; De Pietro, G.; Dhamija, R.; Di Capua, F.; Dingfelder, J.; Dolezal, Z.; Dubey, S.; Epifanov, D.; Ferber, T.; Ferlewicz, D.; Fulsom, B. G.; Garg, R.; Gaur, V.; Gabyshev, N.; Garmash, A.; Giri, A.; Goldenzweig, P.; Graziani, E.; Gu, T.; Gudkova, K.; Hara, T.; Hartbrich, O.; Hayasaka, K.; Villanueva, M. Hernandez; Hou, W. -S.; Hsu, C. -L.; Inami, K.; Inguglia, G.; Ishikawa, A.; Itoh, R.; Iwasaki, M.; Jacobs, W. W.; Jang, E. -J.; Jia, S.; Jin, Y.; Joo, K. K.; Kahn, J.; Kang, K. H.; Kichimi, H.; Kiesling, C.; Kim, C. H.; Kim, D. Y.; Kim, S. H.; Kim, Y. -K.; Kimmel, T. D.; Kodys, P.; Konno, T.; Korobov, A.; Korpar, S.; Kovalenko, E.; Krizan, P.; Kroeger, R.; Krokovny, P.; Kuhr, T.; Kulasiri, R.; Kumar, M.; Kumar, R.; Kumara, K.; Kuzmin, A.; Kwon, Y. -J.; Laurenza, M.; Lee, S. C.; Li, J.; Li, L. K.; Li, Y. B.; Gioi, L. Li; Libby, J.; Lieret, K.; Liventsev, D.; MacQueen, C.; Masuda, M.; Matsuda, T.; Matvienko, D.; Merola, M.; Metzner, F.; Miyabayashi, K.; Mizuk, R.; Mohanty, G. B.; Nakao, M.; Natochii, A.; Nayak, L.; Niiyama, M.; Nisar, N. K.; Nishida, S.; Nishimura, K.; Ogawa, S.; Ono, H.; Onuki, Y.; Oskin, P.; Pakhlov, P.; Pakhlova, G.; Pardi, S.; Park, H.; Park, S. -H.; Patra, S.; Paul, S.; Pedlar, T. K.; Pestotnik, R.; Piilonen, L. E.; Podobnik, T.; Popov, V.; Prencipe, E.; Prim, M. T.; Rostomyan, A.; Rout, N.; Russo, G.; Sahoo, D.; Sandilya, S.; Sangal, A.; Santelj, L.; Sanuki, T.; Savinov, V.; Schnell, G.; Schueler, J.; Schwanda, C.; Seino, Y.; Senyo, K.; Sevior, M. E.; Shapkin, M.; Sharma, C.; Shiu, J. -G.; Simon, F.; Solovieva, E.; Staric, M.; Sumihama, M.; Sumisawa, K.; Sumiyoshi, T.; Takizawa, M.; Tamponi, U.; Tanida, K.; Tenchini, F.; Trabelsi, K.; Uchida, M.; Unno, Y.; Uno, S.; Van Tonder, R.; Varner, G.; Varvell, K. E.; Waheed, E.; Wang, C. H.; Wang, E.; Wang, P.; Watanabe, M.; Watanuki, S.; Werbycka, O.; Won, E.; Yabsley, B. D.; Yan, W.; Yang, S. B.; Ye, H.; Yin, J. H.; Zhang, Z. P.; Zhilich, V.; Zhukova, V. | Univ Basque Country UPV EHU, Dept Phys, Bilbao 48080, Spain; Univ Bonn, D-53115 Bonn, Germany; Brookhaven Natl Lab, Upton, NY 11973 USA; RAS, SB, Budker Inst Nucl Phys, Novosibirsk 630090, Russia; Charles Univ Prague, Fac Math & Phys, Prague 12116, Czech Republic; Chonnam Natl Univ, Gwangju 61186, South Korea; Univ Cincinnati, Cincinnati, OH 45221 USA; DESY, D-22607 Hamburg, Germany; Fu Jen Catholic Univ, Dept Phys, Taipei 24205, Taiwan; Fudan Univ, Key Lab Nucl Phys & Ion Beam Applicat MOE, Shanghai 200443, Peoples R China; Fudan Univ, Inst Modern Phys, Shanghai 200443, Peoples R China; Gifu Univ, Gifu 5011193, Japan; SOKENDAI Grad Univ Adv Studies, Hayama, Kanagawa 2400193, Japan; Gyeongsang Natl Univ, Jinju 52828, South Korea; Hanyang Univ, Dept Phys, Seoul 04763, South Korea; Hanyang Univ, Inst Nat Sci, Seoul 04763, South Korea; Univ Hawaii, Honolulu, HI 96822 USA; High Energy Accelerator Res Org KEK, Tsukuba, Ibaraki 3050801, Japan; High Energy Accelerator Res Org KEK, J PARC Branch, KEK Theory Ctr, Tsukuba, Ibaraki 3050801, Japan; Natl Res Univ Higher Sch Econ, Moscow 101000, Russia; Forschungszentrum Julich, D-52425 Julich, Germany; Basque Fdn Sci, Ikerbasque, Bilbao 48013, Spain; Indian Inst Sci Educ & Res Mohali, Sas Nagar 140306, India; Indian Inst Technol Bhubaneswar, Satya Nagar 751007, India; Indian Inst Technol Guwahati, Gauhati 781039, Assam, India; Indian Inst Technol Hyderabad, Hyderabad 502285, Telangana, India; Indian Inst Technol Madras, Chennai 600036, Tamil Nadu, India; Indiana Univ, Bloomington, IN 47408 USA; Chinese Acad Sci, Inst High Energy Phys, Beijing 100049, Peoples R China; Inst High Energy Phys, A-1050 Vienna, Austria; Inst High Energy Phys, Protvino 142281, Russia; Ist Nazl Fis Nucl, Sez Napoli, I-80126 Naples, Italy; Ist Nazl Fis Nucl, Sez Roma Tre, I-00146 Rome, Italy; Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy; Japan Atom Energy Agcy, Adv Sci Res Ctr, Naka, Ibaraki 3191195, Japan; J Stefan Inst, Ljubljana 1000, Slovenia; Karlsruher Inst Technol, Inst Expt Teilchenphys, D-76131 Karlsruhe, Germany; Univ Tokyo, Kavli Inst Phys & Math Universe WPI, Kashiwa, Chiba 2778583, Japan; Kennesaw State Univ, Kennesaw, GA 30144 USA; Kitasato Univ, Sagamihara, Kanagawa 2520373, Japan; Korea Inst Sci & Technol Informat, Daejeon 34141, South Korea; Korea Univ, Seoul 02841, South Korea; Kyoto Sangyo Univ, Kyoto 6038555, Japan; Kyungpook Natl Univ, Daegu 41566, South Korea; Univ Paris Saclay, IJCLab, CNRS, IN2P3, F-91405 Orsay, France; Russian Acad Sci, PN Lebedev Phys Inst, Moscow 119991, Russia; Univ Ljubljana, Fac Math & Phys, Ljubljana 1000, Slovenia; Ludwig Maximilians Univ Munchen, D-80539 Munich, Germany; Luther Coll, Decorah, IA 52101 USA; Malaviya Natl Inst Technol Jaipur, Jaipur 302017, Rajasthan, India; Univ Maribor, Fac Chem & Chem Engn, Maribor 2000, Slovenia; Max Planck Inst Phys & Astrophys, D-80805 Munich, Germany; Univ Melbourne, Sch Phys, Melbourne, Vic 3010, Australia; Univ Mississippi, University, MS 38677 USA; Univ Miyazaki, Miyazaki 8892192, Japan; Moscow Phys Engn Inst, Moscow 115409, Russia; Nagoya Univ, Grad Sch Sci, Nagoya, Aichi 4648602, Japan; Univ Napoli Federico II, I-80126 Naples, Italy; Nara Womens Univ, Nara 6308506, Japan; Natl Cent Univ, Chungli 32054, Taiwan; Natl United Univ, Miaoli 36003, Taiwan; Natl Taiwan Univ, Dept Phys, Taipei 10617, Taiwan; H Niewodniczanski Inst Nucl Phys, PL-31342 Krakow, Poland; Nippon Dent Univ, Niigata 9518580, Japan; Niigata Univ, Niigata 9502181, Japan; Novosibirsk State Univ, Novosibirsk 630090, Russia; Osaka City Univ, Osaka 5588585, Japan; Pacific Northwest Natl Lab, Richland, WA 99352 USA; Panjab Univ, Chandigarh 160014, India; Peking Univ, Beijing 100871, Peoples R China; Univ Pittsburgh, Pittsburgh, PA 15260 USA; Punjab Agr Univ, Ludhiana 141004, Punjab, India; Osaka Univ, Nucl Phys Res Ctr, Osaka 5670047, Japan; RIKEN, Meson Sci Lab, Cluster Pioneering Res, Saitama 3510198, Japan; Univ Roma Tre, Dipartimento Matemat & Fis, I-00146 Rome, Italy; Univ Sci & Technol China, Dept Modern Phys, Hefei 230026, Peoples R China; Univ Sci & Technol China, State Key Lab Particle Detect & Elect, Hefei 230026, Peoples R China; Seoul Natl Univ, Seoul 08826, South Korea; Showa Pharmaceut Univ, Tokyo 1948543, Japan; Soongsil Univ, Seoul 06978, South Korea; Sungkyunkwan Univ, Suwon 16419, South Korea; Univ Sydney, Sch Phys, Sydney, NSW 2006, Australia; Tata Inst Fundamental Res, Mumbai 400005, Maharashtra, India; Tech Univ Munich, Dept Phys, D-85748 Garching, Germany; Toho Univ, Funabashi, Chiba 2748510, Japan; Tohoku Univ, Dept Phys, Sendai, Miyagi 9808578, Japan; Univ Tokyo, Earthquake Res Inst, Tokyo 1130032, Japan; Univ Tokyo, Dept Phys, Tokyo 1130033, Japan; Tokyo Inst Technol, Tokyo 1528550, Japan; Tokyo Metropolitan Univ, Tokyo 1920397, Japan; Virginia Polytech Inst & State Univ, Blacksburg, VA 24061 USA; Wayne State Univ, Detroit, MI 48202 USA; Yamagata Univ, Yamagata 9908560, Japan; Yonsei Univ, Seoul 03722, South Korea; Univ Tabuk, Dept Phys, Fac Sci, Tabuk 71451, Saudi Arabia | zhang, xu/JXX-7692-2024; Chilikin, Kirill/B-4402-2014; ISHIKAWA, Akimasa/AAG-9668-2020; Tamponi, Umberto/AGG-5576-2022; Gaur, Vipin/HZM-4280-2023; sun, jian/H-2376-2015; Oskin, Pavel/AAB-5345-2020; Kovalenko, Evgeniy/AAL-6514-2021; Mizuk, Roman/B-3751-2014; Waheed, Eiasha/AAG-6743-2021; Solovieva, Elena/B-2449-2014; Sandilya, Saurabh/AAR-2477-2021; Yang, Yang/HSG-7239-2023; Campajola, Marcello/V-1689-2019; Yuncu, Alperen/GVU-4775-2022; Pachariya, Manoj/A-9646-2016; Chang, Philip/AAN-3350-2021; Križan, Peter/L-7809-2016; Cheon, Byung/B-3035-2008; Yang, Lingwei/AAQ-5349-2020; Križan, Peter/AAR-5258-2020; Dong, Thanh/MIT-2305-2025; Praks, Pavel/A-6243-2010; Bilka, Tadeáš/Q-3680-2017; Aihara, Hiroaki/F-3854-2010; Pestotnik, Rok/A-3626-2008; Kim, Ji Hoon/AAB-4602-2022; Tenchini, Francesco/JTT-8673-2023; Shimizu, Noritaka/AHE-7477-2022; Doležal, Zdeněk/K-6861-2017; Wang, Shaohui/HKO-6774-2023; Werbycka, Olga/HTQ-3921-2023; Aushev, Tagir/AAN-9735-2020; Liventsev, Dmitri/MYR-0735-2025; De Pietro, Giacomo/MAH-8745-2025; , Luo/AAP-8401-2020; Nellikunnummel, Nisar/AAY-7200-2021; Kumar, Abhishek/KCL-4676-2024; Paul, Stephan/F-7596-2015; Popov, Vitaliy/C-9925-2016; Niiyama, Masayuki/HPE-8084-2023; Won, Eunil/S-7182-2019; BABU, JENSY/KAM-3345-2024; Pakhlov, Pavel/K-2158-2013; Choudhury, Seema/LEM-7962-2024; Cervenkov, Daniel/D-2884-2017; Zhukova, Valentina/C-8878-2016; Kodys, Peter/P-2636-2017; Dhamija, Ritika/AAD-1338-2022 | 57488886000; 36777886700; 35226935400; 26431253400; 35226924300; 35228789100; 57205336008; 35226925000; 36473131000; 56673779100; 35226929900; 57943353600; 35226926800; 35228802000; 57208362193; 57830739900; 56624583600; 57055915400; 25926337000; 57225386308; 35271332600; 7007185851; 57222995945; 35276918200; 57201115046; 55913471500; 35225729000; 58772580500; 35227071900; 35271166300; 57225375986; 57207576178; 57207798241; 57216645386; 35227095000; 59110376400; 57767118500; 57215682164; 55368264400; 57028463700; 57202083225; 35227136100; 57206305017; 57219795668; 57208830718; 35227134400; 57214699347; 56044932800; 35227130100; 15126870300; 57211204300; 35227244500; 57219588212; 37074665000; 35227272700; 35227285100; 7102961266; 35233679700; 7006321472; 59575364000; 57219331214; 7404213171; 55816086100; 35227356500; 57190214442; 59454509100; 55817230300; 56522611500; 54881461100; 35227389900; 7103061159; 35227405400; 7201781287; 57212275346; 57194692653; 59299091500; 35227379900; 57196259512; 57224903543; 35227523300; 8062452400; 57199973280; 35225891500; 7601588326; 59734007100; 57211428599; 58172298700; 53063887800; 57170079600; 57080476200; 57222187903; 10639485800; 35227502900; 57221971291; 35227570700; 35227485700; 58018872200; 55553737220; 57216645334; 57205335932; 56419217900; 57223968999; 57257924100; 55870040700; 57202345327; 58754147400; 26867892800; 55820982400; 57211034012; 56812540000; 57205390925; 56779517600; 59587666000; 18536939900; 36876647700; 57195488802; 57214926999; 35227750200; 35227732200; 57203524033; 57194197815; 57219797292; 57219719005; 55632289100; 57219627811; 26632346500; 35227762800; 7401965457; 35227766800; 57211715084; 35227740400; 35234620700; 6602539790; 35086680500; 57207467557; 57219437245; 57224178513; 35227847800; 35227892100; 57205388346; 35227932600; 58918272500; 35227850000; 36099403700; 8721811800; 57213625981; 7202429853; 57215857178; 56985930800; 57215862663; 35590850800; 8059063000; 56482852900; 8721812700; 57204956418; 35228014600; 56985327200; 57214214242; 35227980100; 35227994200; 57221053071; 55628572552; 55627811900; 25958374200; 35227948400; 6603406495; 57215086563; 57210776754; 35942976800; 57236402500; 8388152800; 37103051300; 35228062300; 57219721118; 59828691600; 35228086800; 57204557858; 57222996364; 58817756100; 57193702443; 59091623000; 58858085200; 57202261521; 35228289800; 57014809700; 57224183690; 35274124300; 56433757500; 35770088900; 57204951807; 55286044100; 56449839600; 58754347000; 35228211600; 57990888000 | PHYSICAL REVIEW D | PHYS REV D | 2470-0010 | 2470-0029 | 108 | 1 | SCIE | ASTRONOMY & ASTROPHYSICS;PHYSICS, PARTICLES & FIELDS | 2023 | 4.6 | 19.6 | 2.3 | 2025-06-25 | 7 | 16 | IDENTIFICATION | English | 2023 | 2023-07-13 | 10.1103/physrevd.108.l011102 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |||||
| ○ | ○ | Article | Search for the lepton-flavor violating decay of the Higgs boson and additional Higgs bosons in the eμ final state in proton-proton collisions at √s=13 TeV | A search for the lepton-flavor violating decay of the Higgs boson and potential additional Higgs bosons with a mass in the range 110-160 GeV to an e(+/-)mu(-/+) pair is presented. The search is performed with a proton-proton collision dataset at a center-of-mass energy of 13 TeV collected by the CMS experiment at the LHC, corresponding to an integrated luminosity of 138 fb(-1). No excess is observed for the Higgs boson. The observed (expected) upper limit on the e(+/-)mu(-/+) branching fraction for it is determined to be 4.4(4.7) x 10(-5) at 95% confidence level, the most stringent limit set thus far from direct searches. The largest excess of events over the expected background in the full mass range of the search is observed at an e(+/-)mu(-/+) invariant mass of approximately 146 GeV with a local (global) significance of 3.8 (2.8) standard deviations. | Hayrapetyan, A.; Tumasyan, A.; Adam, W.; Andrejkovic, J. W.; Bergauer, T.; Chatterjee, S.; Damanakis, K.; Dragicevic, M.; Del Valle, A. Escalante; Hussain, P. S.; Jeitler, M.; Krammer, N.; Lechner, L.; Liko, D.; Mikulec, I.; Schieck, J.; Schoefbeck, R.; Schwarz, D.; Sonawane, M.; Templ, S.; Waltenberger, W.; Wulz, C. -E.; Darwish, M. R.; Janssen, T.; Kello, T.; Van Mechelen, P.; Bols, E. S.; D'Hondt, J.; De Moor, A.; Delcourt, M.; El Faham, H.; Lowette, S.; Makarenko, I.; Morton, A.; Muller, D.; Sahasransu, A. R.; Tavernier, S.; Van Putte, S.; Vannerom, D.; Clerbaux, B.; Dansana, S.; De Lentdecker, G.; Favart, L.; Hohov, D.; Jaramillo, J.; Lee, K.; Mahdavikhorrami, M.; Malara, A.; Paredes, S.; Petre, L.; Postiau, N.; Thomas, L.; Vanden Bemden, M.; Vander Velde, C.; Vanlaer, P.; De Coen, M.; Dobur, D.; Knolle, J.; Lambrecht, L.; Mestdach, G.; Rendon, C.; Samalan, A.; Skovpen, K.; Tytgat, M.; Van Den Bossche, N.; Vermassen, B.; Wezenbeek, L.; Benecke, A.; Bruno, G.; Bury, F.; Caputo, C.; Delaere, C.; Donertas, I. S.; Giammanco, A.; Jaffel, K.; Jain, Sa.; Lemaitre, V.; Lidrych, J.; Mastrapasqua, P.; Mondal, K.; Tran, T. T.; Wertz, S.; Alves, G. A.; Coelho, E.; Hensel, C.; Moraes, A.; Rebello Teles, P.; Alda Junior, W. L.; Alves Gallo Pereira, M.; Barroso Ferreira Filho, M.; Brandao Malbouisson, H.; Carvalho, W.; Chinellato, J.; Da Costa, E. M.; Da Silveira, G. G.; De Jesus Damiao, D.; Dos Santos Sousa, V.; Fonseca De Souza, S.; Martins, J.; Mora Herrera, C.; Mota Amarilo, K.; Mundim, L.; Nogima, H.; Santoro, A.; Silva Do Amaral, S. M.; Sznajder, A.; Thiel, M.; Vilela Pereira, A.; Bernardes, C. A.; Calligaris, L.; Fernandez Perez Tomei, T. R.; Gregores, E. M.; Mercadante, P. G.; Novaes, S. F.; Orzari, B.; Padula, Sandra S.; Aleksandrov, A.; Antchev, G.; Hadjiiska, R.; Iaydjiev, P.; Misheva, M.; Shopova, M.; Sultanov, G.; Dimitrov, A.; Ivanov, T.; Litov, L.; Pavlov, B.; Petkov, P.; Petrov, A.; Shumka, E.; Keshri, S.; Thakur, S.; Cheng, T.; Guo, Q.; Javaid, T.; Mittal, M.; Yuan, L.; Bauer, G.; Hu, Z.; Yi, K.; Chen, G. M.; Chen, H. S.; Chen, M.; Iemmi, F.; Jiang, C. H.; Kapoor, A.; Liao, H.; Liu, Z. -A.; Monti, F.; Sharma, R.; Song, J. N.; Tao, J.; Wang, C.; Wang, J.; Zhang, H.; Agapitos, A.; Ban, Y.; Levin, A.; Li, C.; Li, Q.; Lyu, X.; Mao, Y.; Qian, S. J.; Sun, X.; Wang, D.; Yang, H.; Lu, M.; You, Z.; Lu, N.; Gao, X.; Leggat, D.; Okawa, H.; Zhang, Y.; Lin, Z.; Lu, C.; Xiao, M.; Avila, C.; Barbosa Trujillo, D. A.; Cabrera, A.; Florez, C.; Fraga, J.; Reyes Vega, J. A.; Mejia Guisao, J.; Ramirez, F.; Rodriguez, M.; Ruiz Alvarez, J. D.; Giljanovic, D.; Godinovic, N.; Lelas, D.; Sculac, A.; Kovac, M.; Sculac, T.; Bargassa, P.; Brigljevic, V.; Chitroda, B. K.; Ferencek, D.; Mishra, S.; Starodumov, A.; Susa, T.; Attikis, A.; Christoforou, K.; Konstantinou, S.; Mousa, J.; Nicolaou, C.; Ptochos, F.; Razis, P. A.; Rykaczewski, H.; Saka, H.; Stepennov, A.; Finger, M.; Finger, M., Jr.; Kveton, A.; Ayala, E.; Carrera Jarrin, E.; Elgammal, S.; Kamel, A. Ellithi; Al-Mashad, M. Abdullah; Mahmoud, M. A.; Ehataht, K.; Kadastik, M.; Lange, T.; Nandan, S.; Nielsen, C.; Pata, J.; Raidal, M.; Tani, L.; Veelken, C.; Kirschenmann, H.; Osterberg, K.; Voutilainen, M.; Bharthuar, S.; Brucken, E.; Garcia, F.; Havukainen, J.; Kallonen, K. T. S.; Kim, M. S.; Kinnunen, R.; Lampen, T.; Lassila-Perini, K.; Lehti, S.; Linden, T.; Lotti, M.; Martikainen, L.; Myllymaki, M.; Rantanen, M. M.; Siikonen, H.; Tuominen, E.; Tuominiemi, J.; Luukka, P.; Petrow, H.; Tuuva, T.; Amendola, C.; Besancon, M.; Couderc, F.; Dejardin, M.; Denegri, D.; Faure, J. L.; Ferri, F.; Ganjour, S.; Gras, P.; de Monchenault, G. Hamel; Lohezic, V.; Malcles, J.; Rander, J.; Rosowsky, A.; Sahin, M. O.; Savoy-Navarro, A.; Simkina, P.; Titov, M.; Barrera, C. Baldenegro; Beaudette, F.; Perraguin, A. Buchot; Busson, P.; Cappati, A.; Charlot, C.; Damas, F.; Davignon, O.; Diab, B.; Falmagne, G.; Alves, B. A. Fontana Santos; Ghosh, S.; de Cassagnac, R. Granier; Hakimi, A.; Harikrishnan, B.; Liu, G.; Motta, J.; Nguyen, M.; Ochando, C.; Portales, L.; Salerno, R.; Sarkar, U.; Sauvan, J. B.; Sirois, Y.; Tarabini, A.; Vernazza, E.; Zabi, A.; Zghiche, A.; Agram, J. -L.; Andrea, J.; Apparu, D.; Bloch, D.; Brom, J. -M.; Chabert, E. C.; Collard, C.; Goerlach, U.; Grimault, C.; Le Bihan, A. -C.; Van Hove, P.; Beauceron, S.; Blancon, B.; Boudoul, G.; Chanon, N.; Choi, J.; Contardo, D.; Depasse, P.; Dozen, C.; El Mamouni, H.; Fay, J.; Gascon, S.; Gouzevitch, M.; Greenberg, C.; Grenier, G.; Ille, B.; Laktineh, I. B.; Lethuillier, M.; Mirabito, L.; Perries, S.; Vander Donckt, M.; Verdier, P.; Xiao, J.; Bagaturia, I.; Lomidze, I.; Tsamalaidze, Z.; Botta, V.; Feld, L.; Klein, K.; Lipinski, M.; Meuser, D.; Pauls, A.; Roewert, N.; Teroerde, M.; Diekmann, S.; Dodonova, A.; Eich, N.; Eliseev, D.; Erdmann, M.; Fackeldey, P.; Fischer, B.; Hebbeker, T.; Hoepfner, K.; Ivone, F.; Lee, M. Y.; Mastrolorenzo, L.; Merschmeyer, M.; Meyer, A.; Mondal, S.; Mukherjee, S.; Noll, D.; Novak, A.; Nowotny, F.; Pozdnyakov, A.; Rath, Y.; Redjeb, W.; Rehm, F.; Reithler, H.; Schmidt, A.; Schuler, S. C.; Sharma, A.; Stein, A.; Torres Da Silva De Araujo, F.; Vigilante, L.; Wiedenbeck, S.; Zaleski, S.; Dziwok, C.; Fluegge, G.; Ahmad, W. 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M.; Diotalevi, T.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giommi, L.; Grandi, C.; Guiducci, L.; Lo Meo, S.; Lunerti, L.; Marcellini, S.; Masetti, G.; Navarria, F. L.; Perrotta, A.; Primavera, F.; Rossi, A. M.; Rovelli, T.; Siroli, G. P.; Costa, S.; Di Mattia, A.; Potenza, R.; Tricomi, A.; Tuve, C.; Barbagli, G.; Bardelli, G.; Camaiani, B.; Cassese, A.; Ceccarelli, R.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Latino, G.; Lenzi, P.; Lizzo, M.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Viliani, L.; Benussi, L.; Bianco, S.; Meola, S.; Piccolo, D.; Chatagnon, P.; Ferro, F.; Robutti, E.; Tosi, S.; Benaglia, A.; Boldrini, G.; Brivio, F.; Cetorelli, F.; De Guio, F.; Dinardo, M. E.; Dini, P.; Gennai, S.; Ghezzi, A.; Govoni, P.; Guzzi, L.; Lucchini, M. T.; Malberti, M.; Malvezzi, S.; Massironi, A.; Menasce, D.; Moroni, L.; Paganoni, M.; Pedrini, D.; Pinolini, B. S.; Ragazzi, S.; Redaelli, N.; de Fatis, T. Tabarelli; Zuolo, D.; Buontempo, S.; Cagnotta, A.; Carnevali, F.; Cavallo, N.; De Iorio, A.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Paolucci, P.; Rossi, B.; Sciacca, C.; Ardino, R.; Azzi, P.; Bacchetta, N.; Bortignon, P.; Bragagnolo, A.; Checchia, P.; Dorigo, T.; Gasparini, F.; Gasparini, U.; Grosso, G.; Layer, L.; Lusiani, E.; Margoni, M.; Maron, G.; Meneguzzo, A. T.; Michelotto, M.; Migliorini, M.; Pazzini, J.; Ronchese, P.; Rossin, R.; Simonetto, F.; Strong, G.; Tosi, M.; Triossi, A.; Ventura, S.; Yarar, H.; Zanetti, M.; Zotto, P.; Zucchetta, A.; Zumerle, G.; Abu Zeid, S.; Aime, C.; Braghieri, A.; Calzaferri, S.; Fiorina, D.; Montagna, P.; Re, V.; Riccardi, C.; Salvini, P.; Vai, I.; Vitulo, P.; Asenov, P.; Bilei, G. M.; Ciangottini, D.; Fano, L.; Magherini, M.; Mantovani, G.; Mariani, V.; Menichelli, M.; Moscatelli, F.; Piccinelli, A.; Presilla, M.; Rossi, A.; Santocchia, A.; Spiga, D.; Tedeschi, T.; Azzurri, P.; Bagliesi, G.; Bhattacharya, R.; Bianchini, L.; Boccali, T.; Bossini, E.; Bruschini, D.; Castaldi, R.; Ciocci, M. A.; D'Amante, V.; Dell'Orso, R.; Donato, S.; Giassi, A.; Ligabue, F.; Figueiredo, D. Matos; Messineo, A.; Musich, M.; Palla, F.; Parolia, S.; Ramirez-Sanchez, G.; Rizzi, A.; Rolandi, G.; Chowdhury, S. Roy; Sarkar, T.; Scribano, A.; Spagnolo, P.; Tenchini, R.; Tonelli, G.; Turini, N.; Venturi, A.; Verdini, P. G.; Barria, P.; Campana, M.; Cavallari, F.; Mendez, L. Cunqueiro; Del Re, D.; Di Marco, E.; Diemoz, M.; Errico, F.; Longo, E.; Meridiani, P.; Mijuskovic, J.; Organtini, G.; Pandolfi, F.; Paramatti, R.; Quaranta, C.; Rahatlou, S.; Rovelli, C.; Santanastasio, F.; Soffi, L.; Tramontano, R.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Bartosik, N.; Bellan, R.; Bellora, A.; Biino, C.; Cartiglia, N.; Costa, M.; Covarelli, R.; Demaria, N.; Finco, L.; Grippo, M.; Kiani, B.; Legger, F.; Luongo, F.; Mariotti, C.; Maselli, S.; Mecca, A.; Migliore, E.; Monteno, M.; Mulargia, R.; Obertino, M. M.; Ortona, G.; Pacher, L.; Pastrone, N.; Pelliccioni, M.; Ruspa, M.; Shchelina, K.; Siviero, F.; Sola, V.; Solano, A.; Soldi, D.; Staiano, A.; Tarricone, C.; Tornago, M.; Trocino, D.; Umoret, G.; Vagnerini, A.; Vlasov, E.; Belforte, S.; Candelise, V.; Casarsa, M.; Cossutti, F.; Della Ricca, G.; Sorrentino, G.; Dogra, S.; Huh, C.; Kim, B.; Kim, D. H.; Kim, J.; Lee, J.; Lee, S. W.; Moon, C. S.; Oh, Y. D.; Pak, S. I.; Ryu, M. S.; Sekmen, S.; Yang, Y. 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56437697200; 57219788098; 59395369400; 57764686200; 59395375000; 35356052000; 57218673910; 58632153800; 57215720905; 59651330000; 57219190462; 55286336800; 57219956365; 55974161000; 58139598200; 36721432400; 56461284200; 35227973900; 56289725200; 57220521234; 55350384900; 56973389300; 35227159700; 37048454000; 57043822800; 35227367700; 57202847289; 51663846700; 56681723400; 57204005081; 55203009000; 56352741400; 12758816400; 57217797874; 57190728397; 57226383460; 58305659800; 56681986300; 58304446500; 57205307086; 57199997802; 55095942200; 9276392600; 36171331300; 57220737619; 57220064466; 57908413800; 57908457500; 56682132200; 57220064460; 57216997315; 57220064173; 57220064313; 57220064097; 55548989800; 57215664124; 57202522373; 57216596346; 57220064080; 57217841082; 57221685212; 57220064375; 36675437100; 57203514331; 58258499700; 57207983072; 22996761700; 57201370087; 56681988200; 57147084600; 55868435500; 57210751238; 35308730700; 8984617000; 57218669202; 7006404363; 7003879901; 57210321748; 57215670509; 36639963700; 57220192022; 56501874000; 36123824900; 57217021019; 16403346300; 57193206437; 58259651600; 57216948352; 58257762300; 7004861291; 24298133700; 35577656800; 35226925000; 36639408600; 57208572365; 57220204277; 35227010100; 57226710844; 57221326508; 35232648300; 16244067100; 35227077900; 57216905806; 36968004200; 57204865931; 35278004600; 57219783697; 56188241800; 56448116400; 59822807600; 16476081700; 57209051553; 57211494367; 7005224262; 7004149654; 7004035621; 58995505100; 57223617663; 57204866286; 57627423800; 14829151800; 58382053200; 26657945700; 44461662400; 35227589200; 57219782560; 6603378914; 16744350200; 57203677312; 7005803334; 57211730811; 57042392600; 36147724500; 36095944400; 35278527200; 7005378952; 58323685100; 35227797000; 35286022100; 36158373600; 36640737100; 57217016440; 10041045600; 59576285400; 6506194695; 6506118483; 55633854100; 59589391500; 57350205800; 57195762012; 59825755800; 57213520574; 57202021393; 57195761975; 56354213100; 57203666599; 57202851343; 57224990533; 57199995872; 7006306242; 9739808000; 57217846115; 7003412423; 16445120800; 6508005859; 35228097700; 6602912106; 55728695200; 57188571026; 57209048617; 7004261852; 57202018147; 6602446917 | PHYSICAL REVIEW D | PHYS REV D | 2470-0010 | 2470-0029 | 108 | 7 | SCIE | ASTRONOMY & ASTROPHYSICS;PHYSICS, PARTICLES & FIELDS | 2023 | 4.6 | 19.6 | 2.44 | 2025-06-25 | 15 | 17 | NONCONSERVATION | English | 2023 | 2023-10-10 | 10.1103/physrevd.108.072004 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |||||
| ○ | ○ | Article | Strong decay widths and mass spectra of charmed baryons | The total decay widths of the charmed baryons are calculated by means of the 3P0 model. Our calculations consider in the final states: the charmed baryon-(vector/pseudoscalar) meson pairs and the (octet/decuplet) baryon-(pseudoscalar/vector) charmed meson pairs, within a constituent quark model. Furthermore, we calculate the masses of the charmed baryon ground states and their excitations up to the D -wave in a constituent quark model both in the three-quark and in the quark-diquark schemes, utilizing a Hamiltonian model based on a harmonic oscillator potential plus a mass splitting term that encodes the spin, spin-orbit, isospin, and flavor interactions. The parameters of the Hamiltonian model are fitted to the experimental data of the charmed baryon masses and decay widths. As the experimental uncertainties of the data affect the fitted model parameters, we have thoroughly propagated these uncertainties into our predicted charmed baryon masses and decay widths via a Monte Carlo bootstrap approach, which is often absent in other theoretical studies on this subject. Our quantum number assignments and predictions of the masses and strong partial decay widths are in reasonable agreement with the available data. Thus, our results show the ability to guide future measurements in LHCb, Belle and Belle II experiments. Finally, the appendices provide some details of our calculations, in which we include the flavor coupling coefficients, which are useful for further theoretical investigations. | Garcia-Tecocoatzi, H.; Giachino, A.; Li, J.; Ramirez-Morales, A.; Santopinto, E. | Kyungpook Natl Univ, Ctr High Energy Phys, 80 Daehak Ro, Daegu 41566, South Korea; INFN, Sez Genova, Via Dodecaneso 33, I-16146 Genoa, Italy; Polish Acad Sci, Inst Nucl Phys, Radzikowskiego 152, PL-31342 Krakow, Poland | ; Ramirez, Andres/HZK-9375-2023; Giachino, Alessandro/LKO-2151-2024; Garcia Tecocoatzi, Hugo/ABD-9615-2021; Santopinto, Elena/AGO-8650-2022 | 56548959500; 57195319240; 55870040700; 59815765800; 6601965257 | elena.santopinto@ge.infn.it; | PHYSICAL REVIEW D | PHYS REV D | 2470-0010 | 2470-0029 | 107 | 3 | SCIE | ASTRONOMY & ASTROPHYSICS;PHYSICS, PARTICLES & FIELDS | 2023 | 4.6 | 19.6 | 2.59 | 2025-06-25 | 15 | 19 | HEAVY BARYONS; QUARK-MODEL | English | 2023 | 2023-02-27 | 10.1103/physrevd.107.034031 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||||
| ○ | ○ | Article | Thermally corrected masses and freeze-in dark matter: A case study | If coupled feebly to the Standard Model bath, dark matter can evade the severe constraints from the direct search experiments. At the same time, such interactions help produce dark matter via the freeze-in mechanism. The freeze-in scenario becomes more interesting if one also includes the thermal masses of the different particles involved in the dark matter phenomenology. Incorporating such thermal corrections opens up the possibility of dark matter production via channels that remain kinematically disallowed in the standard freeze-in setup. Motivated by this, we investigate such freeze-in production of the dark matter in a minimally extended U(1)L,-L, framework, which is also known to resolve the muon g - 2 anomaly. Here, the role of the dark matter is played by a scalar with a nontrivial charge under the additional symmetry U(1)L,-Lr. The importance of incorporating the appropriate finite temperature corrections to freeze-in dynamics is aptly demonstrated in this study using the U(1)L,-L, scenario as a prototype. | Chakrabarty, Nabarun; Konar, Partha; Roshan, Rishav; Show, Sudipta | Indian Inst Technol Kanpur, Dept Phys, Kanpur 208016, Uttar Pradesh, India; Phys Res Lab, Ahmadabad 380009, Gujarat, India; Kyungpook Natl Univ, Dept Phys, Daegu 41566, South Korea; Indian Inst Technol, Gandhinagar 382424, Gujarat, India | Konar, Partha/AAI-8826-2021 | 56465007700; 6603296368; 57211218592; 57219466627 | nabarunc@iitk.ac.in;konar@prl.res.in;rishav.roshan@gmail.com;sudipta@prl.res.in; | PHYSICAL REVIEW D | PHYS REV D | 2470-0010 | 2470-0029 | 107 | 3 | SCIE | ASTRONOMY & ASTROPHYSICS;PHYSICS, PARTICLES & FIELDS | 2023 | 4.6 | 19.6 | 0.43 | 2025-06-25 | 2 | 3 | NEUTRINO MASS; LIGHT | English | 2023 | 2023-02-21 | 10.1103/physrevd.107.035021 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||||
| ○ | ○ | Article | Visual inspection of surface mold growth on medium-density fiberboard bonded with oxidized starch adhesives | This study aims to visually inspect the effects of oxidized starch (OS) adhesives prepared with two cross-linkers namely citric acid (CA) and blocked-polymeric MDI (B-pMDI) on the extent of surface-inhabiting molds growth on the surface of medium-density fiberboard (MDF). Five surface-inhabiting molds namely Aspergillus niger (ASN), Penicillium funiculosum (PEC), Rhizopus oryzae (RHO), Aureobasidium pullulans (AUP), and Trichoderma virens (TRV) were inoculated onto MDF samples for four weeks at 26 +/- 2 degrees C and 70-80% relative humidity to enable them grow on the surface. The extent of mycelium growth on the MDF surface was assessed by visual inspection after incubation at four time intervals. The results showed that MDF samples bonded with OS adhesives were more susceptible to the surface-inhabiting molds than the control MDF samples bonded with urea-formaldehyde (UF) resins. The resistance of mold growth on MDF-OS/CA was comparable to MDF-control, particularly against AUP, which was around 0.7 after four weeks, indicating less mold growth on the surface of MDF. The susceptibility of MDF samples to mold increased in the order of MDF-control, MDF-OS/CA, and MDF-OS/B-pMDI. | Lubis, Muhammad Adly Rahandi; Park, Byung-Dae; Kim, Yeong-Suk; Yun, Jeonghee; Shin, Hee Chang | Natl Res & Innovat Agcy Indonesia, Res Ctr Biomass & Bioprod, Cibinong, Indonesia; Kyungpook Natl Univ, Dept Wood & Paper Sci, Daegu 41566, South Korea; Kookmin Univ, Dept Forrest Prod & Biotechnol, Seoul, South Korea; EAGON Ind Co Ltd, Res & Dev Team, Incheon, South Korea | Park, Byung-Dae/ABB-1934-2020; Lubis, Muhammad/K-2440-2019 | 57192278476; 7402834820; 56060202600; 55208222400; 58432139700 | byungdae@knu.ac.kr; | WOOD MATERIAL SCIENCE & ENGINEERING | WOOD MATER SCI ENG | 1748-0272 | 1748-0280 | 18 | 3 | SCIE | MATERIALS SCIENCE, PAPER & WOOD | 2023 | 2.2 | 19.6 | 0.62 | 2025-06-25 | 6 | 8 | Medium-density fiberboard; mold resistance; oxidized starch; cross-linkers | BIOLOGICAL RESISTANCE; WOOD COMPOSITES; PARTICLEBOARD; NANOWOLLASTONITE; RESINS; DECAY; MDF | cross-linkers; Medium-density fiberboard; mold resistance; oxidized starch | Adhesives; Inspection; Oxidation; Polyureas; Starch; Adhesives; Aspergillus; Inspection; Oxidation; Starch; Urea; Urea formaldehyde resins; Aspergillus niger; Aureobasidium pullulans; Control mediums; Crosslinker; Medium density fiberboards; Mould growth; Mould resistances; Oxidized starch; Starch adhesives; Visual inspection; Molds | English | 2023 | 2023-05-04 | 10.1080/17480272.2022.2073828 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |
| ○ | ○ | Article | N-cyanoguanidine modified-black peanut shell biochar: fabrication and its sorption for Cu(II) and Co(II) in a single and mixed solutions | A N-cyanoguanidine (NCY)-modified black peanut shell biochar was fabricated via NCY to modify waste black peanut shell. X-ray diffraction, Fourier transform infrared, scanning electron microscope-energydispersive X-ray spectroscopy, and X-ray photoelectron spectroscopy were used to characterize its performance. Sorption experiments were made to perceive its sorption for Cu(II) and Co(II) and disclosed that Cu(II) had higher sorption selectivity in mixed binary and four-metal solution. Sorption kinetics showed that Cu(II) and Co(II) sorption fitted well with pseudo-1st-order kinetic and diffusionchemisorption models. Sorption isotherms revealed that Langmuir model can better describe its sorption behavior for Cu(II) and Co(II) and its maximum Qm could reach up to 185.66 and 80.59 mg/g at 45 degrees C, respectively. Thermodynamic factors indicated that Cu(II) and Co(II) sorption on NCY-modified black peanut shell biochar was an endothermic and spontaneous manner. Both effective diffusion coefficients (kIp) and mass-transfer coefficients (DEx) proved that Cu(II) and Co(II) sorption comprised multiple-step paces. The major mechanism included electrostatic attraction, mass transfer, complex and chelation, and diffusion-chemisorption. This finding suggests that NCY-modified black peanut shell biochar can be potentially applied to dispose Cu(II) and Co(II)-bearing wastewater from spent new power batteries.(c) 2023 Elsevier Ltd. All rights reserved. | Liu, C.; Yan, X.; Chen, Y. J.; Zhou, Y. Y.; Wu, H.; Wang, H.; Zhang, H. -X.; Yang, J. . -M.; Yoon, K. -B. | Anhui Univ Technol, Sch Mat Sci & Engn, Maanshan 243032, Anhui, Peoples R China; Anhui Univ Technol, Sch Chem & Chem Engn, Maanshan 243032, Anhui, Peoples R China; Kyungpook Natl Univ, Dept Polymer Sci & Engn, Daegu, South Korea | ; Yang, Jianming/GLR-9847-2022 | 58606037500; 57222030771; 57847310400; 58303255000; 59815070500; 58744001300; 25633288200; 57192669382; 7401607550 | 836912517@qq.com;hxzhang@ahut.edu.cn;jianming1072@163.com;kbyoon@knu.ac.kr; | MATERIALS TODAY SUSTAINABILITY | MATER TODAY SUSTAIN | 2589-2347 | 24 | SCIE | GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY;MATERIALS SCIENCE, MULTIDISCIPLINARY | 2023 | 7.1 | 19.7 | 0.55 | 2025-06-25 | 6 | 6 | Modified; Peanut shell; Toxic-metal cations; Models; Coefficient; Mechanism | CHITOSAN-MODIFIED BIOCHARS; GRAPHITIC CARBON NITRIDE; AQUEOUS-SOLUTIONS; ADSORPTION; REMOVAL; KINETICS; WATER; IONS; EFFICIENT; CR(VI) | Coefficient; Mechanism; Models; Modified; Peanut shell; Toxic-metal cations | Chemisorption; Cobalt compounds; Copper compounds; Energy dispersive spectroscopy; Fabrication; Oilseeds; Scanning electron microscopy; Shells (structures); X ray photoelectron spectroscopy; Biochar; Coefficient; Cyanoguanidine; Metal cation; Mixed solution; Modified; Peanut shells; Toxic metals; Toxic-metal cation; X- ray diffractions; Diffusion | English | 2023 | 2023-12 | 10.1016/j.mtsust.2023.100540 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |||
| ○ | Article | Bilayer dressing based on aerogel/electrospun mats with self-catalytic hydrogen sulfide generation and enhanced antioxidant ability | Hydrogen sulfide (H2S) releasing wound dressings have attracted much attention for their ability to promote cell proliferation, stimulate angiogenesis, and resist inflammation. Mimicking the skin structure, a bilayer wound dressing based on aerogel/mats with H2S release capability was designed and fabricated. A bio-macromolecular H2S donor based on a keratin-TA conjugate (KTC) was first synthesized through a thiol-disulfide exchange reaction. As an inner layer, KTC was then loaded into a gelatin hydrogel with large pores to absorb the wound exudates and generate H2S self-catalytically. Subsequently, polyurethane was electrospun with glutathione (GSH) to be used as an outer layer with small pores, which provided mechanical support, supplied GSH, and prevented bacterial invasion. The bilayer dressing was capable of generating H2S self-catalytically, achieving a controlled and sustained release. The dressing could also promote cell proliferation and migration. In addition, the dress possessed enhanced antioxidant ability and reactive oxygen species (ROS) scavenging capability. The bilayer dressing on promoting wound healing was investigated in a full-thickness excisional cutaneous wound model in rats. The results demonstrated that it could reduce inflammation, promote vascularization, and facilitate hair follicle regeneration, thereby accelerating wound healing. Overall, the bilayer dressing has great potential applications in the field of the wound dressing. | Han, Xiao; Wang, Lijuan; Shang, Yushuang; Liu, Xu; Kang, Inn-kyu; Shen, Jian; Yuan, Jiang | Nanjing Normal Univ, Natl & Local Joint Engn Res Ctr Biomed Funct Mat, Sch Chem & Mat Sci, Nanjing 210023, Peoples R China; Nanjing Univ, Jiangsu Engn Res Ctr Interfacial Chem, Nanjing 210023, Peoples R China; Kyungpook Natl Univ, Dept Polymer Sci & Engn, Daegu 702701, South Korea | Shang, Yushuang/KVA-4035-2024; Han, Xiaoxiang/KDO-8815-2024; Yuan, Jiang/AFE-7044-2022 | jshen@njnu.edu.cn;bioalchem@yahoo.com; | JOURNAL OF MATERIALS CHEMISTRY B | J MATER CHEM B | 2050-750X | 2050-7518 | 11 | 5 | SCIE | MATERIALS SCIENCE, BIOMATERIALS | 2023 | 6.1 | 19.8 | 15 | IN-VITRO; NANOFIBROUS MATS; SKIN; KERATIN; GLUTATHIONE; FABRICATION; EXTRACTION; SCAFFOLDS; MEMBRANE; THIOLS | English | 2023 | 2023-02-01 | 10.1039/d2tb02090d | 바로가기 | 바로가기 | 바로가기 | ||||||||||
| ○ | ○ | Article | Hybrid UAV-Enabled Secure Offloading via Deep Reinforcement Learning | In this letter, we consider a secure offloading system consisting of a unmanned aerial vehicle (UAV)-mounted edge server, ground user equipments (UEs) and a malicious eavesdropper UAV. With the aim of maximizing secrecy sum-rate, we propose an adaptation of a helper UAV to switch the mode between jamming and relaying. We jointly optimize the helper UAV's trajectory and mode and UEs' offloading decision under energy budget constraints and operational limitations of nodes. The proposed algorithm is developed based on a deep deterministic policy gradient (DDPG)-based method, whose superior performances are verified via numerical results, as compared to other benchmark schemes. | Yoo, Seonghoon; Jeong, Seongah; Kang, Joonhyuk | Korea Adv Inst Sci & Technol, Dept Elect Engn, Daejeon 34141, South Korea; Kyungpook Natl Univ, Sch Elect & Elect Engn, Daegu 14566, South Korea | Jeong, Seongah/I-2863-2017; Jeong, Seongah/ABW-7285-2022; Kang, Joonhyuk/C-1771-2011 | 57847200000; 55210226900; 7404517651 | shyoo902@kaist.ac.kr;seongah@knu.ac.kr;jhkang@ee.kaist.ac.kr; | IEEE WIRELESS COMMUNICATIONS LETTERS | IEEE WIREL COMMUN LE | 2162-2337 | 2162-2345 | 12 | 6 | SCIE | COMPUTER SCIENCE, INFORMATION SYSTEMS;ENGINEERING, ELECTRICAL & ELECTRONIC;TELECOMMUNICATIONS | 2023 | 4.6 | 19.8 | 1.78 | 2025-06-25 | 11 | 15 | Autonomous aerial vehicles; Jamming; Relays; Wireless communication; Servers; Switches; Reinforcement learning; Unmanned aerial vehicle (UAV); offloading; physical-layer security; deep reinforcement learning | RESOURCE-ALLOCATION | deep reinforcement learning; offloading; physical-layer security; Unmanned aerial vehicle (UAV) | Antennas; Budget control; Deep learning; Jamming; Network layers; Numerical methods; Unmanned aerial vehicles (UAV); Aerial vehicle; Deep reinforcement learning; Jamming; Offloading; Physical layer security; Reinforcement learnings; Relay; Unmanned aerial vehicle; Wireless communications; Reinforcement learning | English | 2023 | 2023-06 | 10.1109/lwc.2023.3254554 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |
| ○ | ○ | Article | Max-Min Fairness Beamforming With Rate-Splitting Multiple Access: Optimization Without a Toolbox | We propose a max-min fairness (MMF) design method in a multi-antenna downlink network, where rate-splitting multiple access (RSMA) is adopted. A main aim in the considered MMF problem is providing uniformly good rates to users, by carefully controlling the rate of each private and common message, respectively. Solving this problem is challenging since multiple optimization variables, i.e., beamforming vectors and common message portions, are intricately intertwined in a non-tractable objective function. To resolve these obstacles, we first split a whole problem into two stages. In the first stage, we identify beamforming vectors given common message portion by exploiting the LogSumExp (LSE) approximation technique and the novel generalized power iteration (GPI) framework. In the second stage, we determine common message portions under fixed beamforming vectors. Iterating these two stages, we jointly design beamforming vectors and common message portion accordingly. Via simulations, we demonstrate that our method outperforms existing other frameworks in terms of the minimum rate, while requiring extremely small computational complexity. | Kim, Doseon; Choi, Jinseok; Park, Jeonghun; Kim, Dong Ku | Yonsei Univ, Sch Elect & Elect Engn, Seoul 03722, South Korea; Ulsan Natl Inst Sci & Technol, Dept Elect Engn, Ulsan 44919, South Korea; Kyungpook Natl Univ, Coll IT Engn, Sch Elect Engn, Daegu 41566, South Korea | Choi, Jinseok/AAL-6383-2020 | 57959920600; 57190581671; 57853652900; 15019369300 | kds1018@yonsei.ac.kr;jinseokchoi@unist.ac.kr;jeonghun.park@knu.ac.kr;dkkim@yonsei.ac.kr; | IEEE WIRELESS COMMUNICATIONS LETTERS | IEEE WIREL COMMUN LE | 2162-2337 | 2162-2345 | 12 | 2 | SCIE | COMPUTER SCIENCE, INFORMATION SYSTEMS;ENGINEERING, ELECTRICAL & ELECTRONIC;TELECOMMUNICATIONS | 2023 | 4.6 | 19.8 | 1.19 | 2025-06-25 | 10 | 10 | Array signal processing; Minimax techniques; Interference; Quantization (signal); Electronic mail; Downlink; Quality of service; Rate-splitting multiple access; max-min fairness; beamformer design; generalized power iteration; imperfect CSIT | MIMO; DESIGN | beamformer design; generalized power iteration; imperfect CSIT; max-min fairness; Rate-splitting multiple access | Antennas; Array processing; Communication channels (information theory); Design; Iterative methods; Optimization; Problem solving; Quality of service; Quantization (signal); Signal interference; Vector quantization; Vectors; Array signal processing; Beamformer design; Downlink; Generalized power iteration; Imperfect CSIT; Interference; Max-min fairness; Minimax techniques; Multiple access; Power; Quality-of-service; Quantization (signal); Rate splitting; Rate-splitting multiple access; Beamforming | English | 2023 | 2023-02 | 10.1109/lwc.2022.3221526 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |
| ○ | ○ | Article | A Novel Decomposition as a Fast Finite Difference Method for Second Derivatives | In this paper, we propose a fast solver for the linear system-induced from applying the finite difference method. For this purpose, we provide a new decomposition of the matrix consisting of a second-order central finite difference matrix and a small condition number matrix. We analyze the fourth-order finite difference matrix using this decomposition and the good properties of the two decomposed matrices. In addition, we compare the upper bounds of the condition numbers of the three matrices, which are closely related to the number of iterations. In terms of computational cost, we show the superiority of the proposed solver by solving the one-dimensional Poisson's equations. We also demonstrated the efficiency of using the proposed solver by numerically observing the factors, such as condition number and spectral radius. | Bak, Soyoon; Jeon, Yonghyeon; Park, Sangbeom | Kyungpook Natl Univ, Dept Math, 80 Daehak Ro, Daegu 41566, South Korea | Bak, Soyoon/HSE-8486-2023 | 56450371300; 57197815771; 57374873000 | jiya525@knu.ac.kr;dydgus1020@naver.com;piaoxf76@gmail.com; | RESULTS IN MATHEMATICS | RESULTS MATH | 1422-6383 | 1420-9012 | 78 | 1 | SCIE | MATHEMATICS, APPLIED;MATHEMATICS | 2023 | 1.1 | 19.9 | 0.29 | 2025-06-25 | 1 | 1 | Second derivative; finite difference method; eigenvalues; condition number | condition number; eigenvalues; finite difference method; Second derivative | English | 2023 | 2023-02 | 10.1007/s00025-022-01798-y | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |||
| ○ | Article | Fischer–Marsden Conjecture and Equation in the Complex Hyperbolic Quadric | By using the notion of Fischer–Marsden equation on real hypersurfaces in the complex hyperbolic quadric Qm∗=SO2,mo/SO2SOm , we can assert that there does not exist a non-trivial solution (g, ν) of Fischer–Marsden equation on real hypersurfaces with isometric Reeb flow in the complex hyperbolic quadric Qm∗ . Next, as an application we also show that there does not exist a non-trivial solution (g, ν) of the Fischer–Marsden equation on contact real hypersurfaces in the complex hyperbolic quadric Qm∗ . Consequently, the Fischer–Marsden conjecture is true on these two kinds of real hypersurfaces in the complex hyperbolic quadric Qm∗ . © 2023, School of Mathematical Sciences, University of Science and Technology of China and Springer-Verlag GmbH Germany, part of Springer Nature. | Suh, Young Jin | Department of Mathematics and RIRCM, Kyungpook National University, Daegu, 41566, South Korea | 57205268556 | yjsuh@knu.ac.kr; | Communications in Mathematics and Statistics | COMMUN MATH STAT | 2194-6701 | 2194-671X | SCIE | MATHEMATICS | 2023 | 1.1 | 19.9 | 0 | 2025-06-25 | 0 | A -Isotropic; A -Principal; Complex conjugation; Complex hyperbolic quadric; Fischer–Marsden equation; Non-trivial solution (g, ν) | English | Article in press | 2023 | 10.1007/s40304-023-00345-7 | 바로가기 | 바로가기 | 바로가기 | ||||||||||
| ○ | ○ | Article | Yamabe and Quasi-Yamabe Solitons on Hypersurfaces in the Complex Hyperbolic Space | In this paper, we give a complete classification of Yamabe solitons and gradient Yamabe solitons on real hypersurfaces in the complex hyperbolic space CHn = SUn,1/S(U1Un). Next as an application we give a complete classification of quasi-Yamabe and gradient quasiYamabe solitons on Hopf real hypersurfaces in the complex hyperbolic space CHn. | Suh, Young Jin | Kyungpook Natl Univ, Dept Math, Daegu 41566, South Korea; Kyungpook Natl Univ, RIRCM, Daegu 41566, South Korea | 7202260479 | yjsuh@knu.ac.kr; | MEDITERRANEAN JOURNAL OF MATHEMATICS | MEDITERR J MATH | 1660-5446 | 1660-5454 | 20 | 2 | SCIE | MATHEMATICS, APPLIED;MATHEMATICS | 2023 | 1.1 | 19.9 | 1.61 | 2025-06-25 | 3 | 4 | Yamabe soliton; gradient Yamabe soliton; quasi-Yamabe soliton; gradient quasi-Yamabe soliton; complex hyperbolic space | REAL HYPERSURFACES; EINSTEIN HYPERSURFACES | complex hyperbolic space; gradient quasi-Yamabe soliton; gradient Yamabe soliton; quasi-Yamabe soliton; Yamabe soliton | English | 2023 | 2023-04 | 10.1007/s00009-023-02276-7 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |||
| ○ | ○ | Article | Cretaceous beetles of the Jinju Formation (Coleoptera): Archostemata | The beetles from the Lower Cretaceous Lagerstatte in South Korea, Jinju Formation, remain largely unstudied. In the present study, the fossils of suborder Archostemata from the Jinju Formation are described and illustrated, including the complete bodies of Asiania pax gen. et sp. nov. and Brochocoleus sacheonensis sp. nov., and the isolated elytra of Brochocoleus cf. punctatus, Omma sp. and Zygadenia cornigera sp. nov. | Lee, Soo Bin; Nam, Gi Soo; Park, Jong Kyun; Lee, Byong Ho; Li, Yan-Da | Gongju Natl Univ Educ, Dept Sci Educ, 27 Ungjin Ro, Gongju Si 32553, Chungcheongnam, South Korea; Kyungpook Natl Univ, Coll Ecol & Environm Sci, Sangju Si 37224, Gyeongsangbuk D, South Korea; Dongguk Univ, Dept Cultural Heritage, 30,Pildong Ro 1 Gil, Seoul 04620, South Korea; Univ Bristol, Sch Earth Sci, Bristol Palaeobiol Grp, Life Sci Bldg,Tyndall Ave, Bristol BS8 1TQ, Avon, England; Chinese Acad Sci, State Key Lab Palaeobiol & Stratig, Nanjing Inst Geol & Palaeontol, Nanjing 210008, Peoples R China | 57809940200; 57212227602; 37661967000; 57901366400; 57210918498 | dinos20000@naver.com;fossil@gjue.ac.kr;entopark@knu.ac.kr;gudara90@gmail.com;ydli@pku.edu.cn; | PALAEOENTOMOLOGY | PALAEOENTOMOLOGY | 2624-2826 | 2624-2834 | 6 | 5 | ESCI | ENTOMOLOGY;PALEONTOLOGY | 2023 | 1.9 | 20.2 | 1.35 | 2025-06-25 | 5 | 5 | Coleoptera; Archostemata; Jinju Formation; Lower Cretaceous | Archostemata; Coleoptera; Jinju Formation; Lower Cretaceous | English | 2023 | 2023-10 | 10.11646/palaeoentomology.6.5.8 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||||
| ○ | ○ | Article | Development and validation of urinary exosomal microRNA biomarkers for the diagnosis of acute rejection in kidney transplant recipients | IntroductionAcute rejection (AR) continues to be a significant obstacle for short- and long-term graft survival in kidney transplant recipients. Herein, we aimed to examine urinary exosomal microRNAs with the objective of identifying novel biomarkers of AR. Materials and methodsCandidate microRNAs were selected using NanoString-based urinary exosomal microRNA profiling, meta-analysis of web-based, public microRNA database, and literature review. The expression levels of these selected microRNAs were measured in the urinary exosomes of 108 recipients of the discovery cohort using quantitative real-time polymerase chain reaction (qPCR). Based on the differential microRNA expressions, AR signatures were generated, and their diagnostic powers were determined by assessing the urinary exosomes of 260 recipients in an independent validation cohort. ResultsWe identified 29 urinary exosomal microRNAs as candidate biomarkers of AR, of which 7 microRNAs were differentially expressed in recipients with AR, as confirmed by qPCR analysis. A three-microRNA AR signature, composed of hsa-miR-21-5p, hsa-miR-31-5p, and hsa-miR-4532, could discriminate recipients with AR from those maintaining stable graft function (area under the curve [AUC] = 0.85). This signature exhibited a fair discriminative power in the identification of AR in the validation cohort (AUC = 0.77). ConclusionWe have successfully demonstrated that urinary exosomal microRNA signatures may form potential biomarkers for the diagnosis of AR in kidney transplantation recipients. | Seo, Jung-Woo; Lee, Yu Ho; Tae, Dong Hyun; Kim, Yang Gyun; Moon, Ju-Young; Jung, Su Woong; Kim, Jin Sug; Hwang, Hyeon Seok; Jeong, Kyung-Hwan; Jeong, Hye Yun; Lee, So-Young; Chung, Byung Ha; Kim, Chan-Duck; Park, Jae Berm; Seok, Junhee; Kim, Yeong Hoon; Lee, Sang-Ho | Kyung Hee Univ, Dept Internal Med, Div Nephrol, Seoul, South Korea; Kyung Hee Univ Hosp Gangdong, Med Sci Inst, Res Lab, Seoul, South Korea; CHA Univ, CHA Bundang Med Ctr, Dept Internal Med, Div Nephrol, Seongnam, South Korea; Korea Univ, Sch Elect Engn, Seoul, South Korea; Catholic Univ Korea, Seoul St Marys Hosp, Coll Med, Res Ctr,Div Nephrol,Dept Internal Med, Seoul, South Korea; Kyungpook Natl Univ Hosp, Dept Internal Med, Div Nephrol, Daegu, South Korea; Samsung Med Ctr, Dept Surg, Seoul, South Korea; Inje Univ, Busan Paik Hosp, Dept Internal Med, Busan, South Korea | , Prof/W-5371-2019; Kim, Hyoungnae/JXN-1329-2024; Jung, Su Woong/ABB-6914-2021; Kim, Jin Sug/AAY-6890-2021; Moon, Ju-Young/T-6959-2019; Kim, Tae-Hee/AAN-9079-2021; KIM, YANG/AAI-9821-2020 | 56678212900; 56344334200; 57194702774; 57196171049; 7403231326; 57190837371; 56313589100; 13805711400; 8443579300; 57095321900; 57192514661; 57201863822; 8558530700; 13605451500; 24069490100; 7410196419; 55890136000 | yeonghnl@inje.ac.kr;lshkidney@khu.ac.kr; | FRONTIERS IN IMMUNOLOGY | FRONT IMMUNOL | 1664-3224 | 14 | SCIE | IMMUNOLOGY | 2023 | 5.7 | 20.2 | 2.46 | 2025-06-25 | 17 | 17 | kidney transplantation; acute rejection; urine; exosome; microRNA | ANTIBODY-MEDIATED REJECTION; EXTRACELLULAR VESICLES; EXPRESSION; IDENTIFICATION; PROFILES; MIR-21; INJURY; MIRNA | acute rejection; exosome; kidney transplantation; microRNA; urine | Biomarkers; Humans; Kidney Transplantation; MicroRNAs; Real-Time Polymerase Chain Reaction; biological marker; creatinine; microRNA; microRNA 21; microRNA 31; transcriptome; biological marker; microRNA; acute graft rejection; adult; area under the curve; Article; biogenesis; bioinformatics; cohort analysis; controlled study; cross-sectional study; estimated glomerular filtration rate; exosome; female; gene expression; glomerulus filtration rate; graft recipient; graft survival; high throughput screening; human; kidney biopsy; kidney graft; kidney transplantation; liver transplantation; major clinical study; male; middle aged; multicenter study; outcome assessment; polymerase chain reaction; protein fingerprinting; quality control; quantitative analysis; real time polymerase chain reaction; receiver operating characteristic; reverse transcription polymerase chain reaction; transcriptomics; upregulation; urine; validation process; validation study; genetics; kidney transplantation; meta analysis | English | 2023 | 2023-05-09 | 10.3389/fimmu.2023.1190576 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |||
| ○ | ○ | Correction | Development and validation of urinary exosomal microRNA biomarkers for the diagnosis of acute rejection in kidney transplant recipients (vol 14, 1190576, 2023) | Seo, Jung-Woo; Lee, Yu Ho; Tae, Dong Hyun; Kim, Yang Gyun; Moon, Ju-Young; Jung, Su Woong; Kim, Jin Sug; Hwang, Hyeon Seok; Jeong, Kyung-Hwan; Jeong, Hye Yun; Lee, So-Young; Chung, Byung Ha; Kim, Chan-Duck; Park, Jae Berm; Seok, Junhee; Kim, Yeong Hoon; Lee, Sang-Ho | Kyung Hee Univ, Dept Internal Med, Div Nephrol, Seoul, South Korea; Kyung Hee Univ Hosp Gangdong, Med Sci Inst, Res Lab, Seoul, South Korea; CHA Univ, CHA Bundang Med Ctr, Dept Internal Med, Div Nephrol, Seongnam, South Korea; Korea Univ, Sch Elect Engn, Seoul, South Korea; Catholic Univ Korea, Seoul St Marys Hosp, Coll Med, Res Ctr,Div Nephrol,Dept Internal Med, Seoul, South Korea; Kyungpook Natl Univ Hosp, Dept Internal Med, Div Nephrol, Daegu, South Korea; Samsung Med Ctr, Dept Surg, Seoul, South Korea; Inje Univ, Busan Paik Hosp, Dept Internal Med, Busan, South Korea | Kim, Hyoungnae/JXN-1329-2024; Kim, Jin Sug/AAY-6890-2021; Moon, Ju-Young/T-6959-2019; KIM, YANG/AAI-9821-2020; , Prof/W-5371-2019; Kim, Tae-Hee/AAN-9079-2021; Jung, Su Woong/ABB-6914-2021 | 56678212900; 56344334200; 57194702774; 57196171049; 7403231326; 57190837371; 56313589100; 13805711400; 8443579300; 57095321900; 57192514661; 57201863822; 8558530700; 13605451500; 24069490100; 7410196419; 55890136000 | yeonghnl@inje.ac.kr;lshkidney@khu.ac.kr; | FRONTIERS IN IMMUNOLOGY | FRONT IMMUNOL | 1664-3224 | 14 | SCIE | IMMUNOLOGY | 2023 | 5.7 | 20.2 | 2.49 | 2025-06-25 | 0 | 1 | kidney transplantation; acute rejection; urine; exosome; microRNA | acute rejection; exosome; kidney transplantation; microRNA; urine | erratum | English | 2023 | 2023-06-13 | 10.3389/fimmu.2023.1234336 | 바로가기 | 바로가기 | 바로가기 | 바로가기 |
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