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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 |
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| ○ | ○ | Article | Epigenetic readers and lung cancer: the rs2427964C>T variant of the bromodomain and extraterminal domain gene BRD3 is associated with poorer survival outcome in NSCLC | Bromodomain and extraterminal domain (BET) proteins are epigenetic readers that regulate gene expression. We investigated whether variants in BET genes are associated with survival outcomes for lung cancer. To do this, the associations between 77 variants in BET family genes and survival outcomes were analyzed in 773 non-small-cell lung cancer (NSCLC) patients who underwent surgery (349 and 424 patients in the discovery and validation cohorts, respectively). We found that six variants were significantly associated with overall survival (OS) in the discovery cohort, and one variant (rs2506711C>T) was replicated in the validation cohort. BRD3 rs2506711C>T is located in the repressed area and has a strong linkage disequilibrium with rs2427964C>T in the promoter region. BRD3 rs2427964C>T was significantly associated with worse OS in the discovery cohort, validation cohort, and combined analysis. In a luciferase assay, promoter activity in the BRD3 rs2427964 T allele was significantly higher than that in the BRD3 rs2427964 C allele, which selectively bound with the transcriptional repressor SIN3A. Knockdown of BRD3 with BRD3-specific siRNA decreased the proliferation and migration of lung cancer cells while also increasing the rate of apoptosis. These results suggest that BRD3 rs2427964C>T increases BRD3 expression through increased promoter activity, which is associated with poor prognosis for lung cancer. | Lee, Jang Hyuck; Yoo, Seung Soo; Hong, Mi Jeong; Choi, Jin Eun; Kang, Hyo-Gyoung; Do, Sook Kyung; Lee, Won Kee; Choi, Sun Ha; Lee, Yong Hoon; Seo, Hyewon; Lee, Jaehee; Lee, Shin Yup; Cha, Seung Ick; Kim, Chang Ho; Lee, Eung Bae; Cho, Sukki; Jheon, Sanghoon; Park, Jae Yong | Kyungpook Natl Univ, Sch Med, Dept Biochem & Cell Biol, Daegu, South Korea; Kyungpook Natl Univ, Sch Med, Cell & Matrix Res Inst, 680 Gukchaebosang Ro, Daegu 41944, South Korea; Kyungpook Natl Univ, Kyungpook Natl Univ Hosp, Sch Med, Dept Internal Med, Daegu, South Korea; Kyungpook Natl Univ, Med Res Collaborat Ctr, Biostat, Daegu, South Korea; Kyungpook Natl Univ, Sch Med, Dept Thorac Surg, Daegu, South Korea; Seoul Natl Univ, Sch Med, Dept Thorac & Cardiovasc Surg, Seoul, South Korea; Kyungpook Natl Univ, Dept Biomed Sci, BK21 Plus KNU Biomed Convergence Program, Daegu, South Korea | Lee, Eun-Hye/KDN-5679-2024; Lee, Jaehee/S-1697-2018; Lee, You/T-6086-2019; Choi, Sun Ha/HPD-7234-2023 | 57161223200; 56479781600; 55613917100; 37107028100; 8573181300; 56333658000; 22953484700; 57199723585; 57199022948; 55612130200; 13805476000; 49863712700; 35227126400; 7409873555; 55664096100; 23993782100; 35588946900; 58360293800 | mcmx0530@naver.com;jaeyong@knu.ac.kr; | MOLECULAR ONCOLOGY | MOL ONCOL | 1574-7891 | 1878-0261 | 16 | 3 | SCIE | ONCOLOGY | 2022 | 6.6 | 20.5 | 0.27 | 2025-06-25 | 3 | 3 | BET genes; epigenetics; lung cancer; polymorphisms; prognosis | HISTONE MODIFICATIONS; PROTEINS; INHIBITION; SUPPRESSES; PROGNOSIS | Azepines; Carcinoma, Non-Small-Cell Lung; Epigenesis, Genetic; Humans; Lung Neoplasms; Transcription Factors; Triazoles; small interfering RNA; transcription factor Sin3A; azepine derivative; BRD3 protein, human; transcription factor; triazole derivative; adult; apoptosis; Article; brd3 gene; cancer patient; cancer prognosis; cancer surgery; cancer survival; cell migration; cell proliferation; clinical outcome; cohort analysis; controlled study; epigenetics; female; gene; gene linkage disequilibrium; genetic variability; human; human cell; luciferase assay; major clinical study; male; non small cell lung cancer; overall survival; promoter region; protein expression; repressor gene; single nucleotide polymorphism; genetic epigenesis; genetics; lung tumor; metabolism; non small cell lung cancer | English | 2022 | 2022-02 | 10.1002/1878-0261.13109 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||
| ○ | ○ | Article | Bone cyst surgery robot with bendable drilling and remote control | Limited by rigid instruments, traditional open curettage of bone cysts requires large incisions and the removal of substantial amounts of healthy bone tissue to approach the lesion. This causes a lengthy recovery period with an increased risk for complications. While other less invasive methods have been suggested, none have been accepted as standard treatment modalities, and many of them have not been applied beyond academic studies. We propose a fully robotic compliant joint-based endoscopic surgery system capable of the minimally invasive removal of bone cysts. A drilling robot optimized to bend removes the lesion, while an endoscopic robot provides visual feedback as well as suction and irrigation for cleaning the inner bone. Two leader devices are used to precisely control the movement of each robot in a leader-follower configuration. The performance of the proposed system was evaluated in a series of experiments on animal femurs. | Solzbacher, Rene M.; Kim, Seunguk; Lee, Subin; Kim, Hyeonwook; Joung, Sanghyun; Lee, Hyun-Joo; Hong, Jaesung | Daegu Gyeongbuk Inst Sci & Technol DGIST, Dept Robot & Mechatron Engn, E5, 333 Techno jungang Daero,Dalseong Gun, Daegu Gwangyeogsi 42988, South Korea; AIRS Inc, Robot Innovat Ctr 202, 75 Nowonro,Bukgu, Daegu Gwangyeogsi 41496, South Korea; Kyungpook Natl Univ Hosp, Dept Orthoped Surg, 130 Dongdeok Ro, Daegu Gwangyeogsi 41944, South Korea | 58075653900; 57219257841; 58074061500; 57225125058; 14628748500; 58838750100; 55825553700 | jhong@dgist.ac.kr; | JOURNAL OF COMPUTATIONAL DESIGN AND ENGINEERING | J COMPUT DES ENG | 2288-5048 | 9 | 6 | SCIE | COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS;ENGINEERING, MULTIDISCIPLINARY | 2022 | 4.9 | 20.6 | 0.41 | 2025-06-25 | 2 | 4 | bone cyst surgery; compliant joint; endoscopic surgery; minimally invasive; robotic surgery | CONTINUUM ROBOT; DECOMPRESSION; CURETTAGE; PACKING; PELLETS | bone cyst surgery; compliant joint; endoscopic surgery; minimally invasive; robotic surgery | Endoscopy; Infill drilling; Remote control; Surgical equipment; Transplantation (surgical); Visual communication; Visual servoing; Bone cyst surgery; Bone tissue; Compliant joints; Endoscopic surgery; Healthy bones; Invasive methods; Minimally invasive; Recovery periods; Robotics surgery; Surgery robot; control system; instrumentation; performance assessment; robotics; Robotic surgery | English | 2022 | 2022-11-16 | 10.1093/jcde/qwac110 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |||
| ○ | ○ | Article | HFMOEA: a hybrid framework for multi-objective feature selection | In this data-driven era, where a large number of attributes are often publicly available, redundancy becomes a major problem, which leads to large storage and computational resource requirement. Feature selection is a method for reducing the dimensionality of the data by removing such redundant or misleading attributes. This leads to a selection of optimal feature subsets that can be used for further computation like the classification of data. Learning algorithms, when fitted on such optimal subsets of reduced dimensions, perform more efficiently and storing data also becomes easier. However, there exists a trade-off between the number of features selected and the accuracy obtained and the requirement for different tasks may vary. Thus, in this paper, a hybrid filter multi-objective evolutionary algorithm (HFMOEA) has been proposed based on the nondominated sorting genetic algorithm (NSGA-II) coupled with filter-based feature ranking methods for population initialization to obtain an optimal trade-off solution set to the problem. The two competing objectives for the algorithm are the minimization of the number of selected features and the maximization of the classification accuracy. The filter ranking methods used for population initialization help in faster convergence of the NSGA-II algorithm to the PF. The proposed HFMOEA method has been evaluated on 18 UCI datasets and 2 deep feature sets (features extracted from image datasets using deep learning models) to justify the viability of the approach with respect to the state-of-the-art. The relevant codes of the proposed approach are available at https://github.corn/Rohit-Kundu/HFMOEA. | Kundu, Rohit; Mallipeddi, Rammohan | Jadavpur Univ, Dept Elect Engn, Kolkata 700032, W Bengal, India; Kyungpook Natl Univ, Sch Elect Engn, Dept Artificial Intelligence, Daegu 41566, South Korea | Mallipeddi, Rammohan/AAL-5306-2020; Kundu, Rohit/AAV-5810-2021 | 57222071191; 25639919900 | mallipeddi.ram@gmail.com; | JOURNAL OF COMPUTATIONAL DESIGN AND ENGINEERING | J COMPUT DES ENG | 2288-5048 | 9 | 3 | SCIE | COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS;ENGINEERING, MULTIDISCIPLINARY | 2022 | 4.9 | 20.6 | 1.62 | 2025-06-25 | 13 | 16 | hybrid optimization; multi-objective optimization problem (MOOP); feature selection; filter ranking | PARTICLE SWARM OPTIMIZATION; CLASSIFICATION; HARMONY | feature selection; filter ranking; hybrid optimization; multi-objective optimization problem (MOOP) | Classification (of information); Deep learning; Digital storage; Economic and social effects; Genetic algorithms; Learning algorithms; Multiobjective optimization; Features selection; Filter ranking; Hybrid filters; Hybrid framework; Hybrid optimization; Multi-Objective Evolutionary Algorithm; Multi-objective optimization problem; Population initializations; Ranking methods; data management; data set; genetic algorithm; ranking; Feature Selection | English | 2022 | 2022-05-23 | 10.1093/jcde/qwac040 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||
| ○ | ○ | Article | Effects of Perilla frutescens var. acuta in amyloid β toxicity and Alzheimer's disease-like pathology in 5XFAD mice | Although accumulation of amyloid beta (A beta) plaque is a major hallmark of Alzheimer's disease (AD), various pathologies have been suggested therapeutic targets. Therefore, therapies-targeting multiple pathologies would be required for effective managements of AD. Accordingly, natural products, which has multiple active ingredients, have been receiving a lot of attention. In this study, we tested whether standardized ethanol extract of leaves of Perilla frutescens var. acuta (L.) Britt. (Lamiaceae) (ELPF) could modulate various pathologies in AD using 5XFAD mice. ELPF blocked A beta aggregation and disassembled pre-formed A beta aggregates. ELPF blocked A beta aggregates-induced LTP impairment and ELPF-disassembled A beta aggregates failed to impair hippocampal LTP. Systemic administration of ELPF blocked A beta aggregates-induced memory impairment in a passive avoidance test. ELPF-disassembled A beta aggregates failed to impair passive avoidance memory. Prolonged administration of ELPF ameliorated memory impairments in 5XFAD mice. In the hippocampus of 5XFAD mice, ELPF administration significantly reduced A beta deposits and neuroinflammation. These results demonstrate that ELPF could be a promising therapeutic candidate for AD. | Cho, Eunbi; Lee, Jihye; Sin, Jae Seong; Kim, Sung-kyu; Kim, Chul Jin; Park, Mi Hee; Cho, Wan-Seob; Moon, Minho; Kim, Dong Hyun; Jung, Ji Wook | Konkuk Univ, Sch Med, Dept Pharmacol, Seoul 05029, South Korea; Kyungpook Natl Univ, Sch Med, Div Endocrinol, Daegu 41944, South Korea; Dong A Univ, Grad Sch Dong A Univ, Dept Hlth Sci, Busan 49315, South Korea; SFC Bio Co Ltd, Cheonan, Chungnam, South Korea; Jeonju AgroBio Mat Inst, Jeonju, Jeonrabug Do, South Korea; Konyang Univ, Coll Med, Dept Biochem, Daejeon 35365, South Korea; Daegu Haany Univ, Dept Herbal Med Pharmacol, Coll Herbal Bio Ind, Kyungsan, Daegu 38610, South Korea; Konkuk Univ, Sch Med, Dept Adv Translat Med, Seoul 05029, South Korea | Kim, Sung Kyu/GSI-4036-2022; Kim, Dong Hyun/AEC-4494-2022; Cho, Wanseob/AAP-5991-2020 | 57202281620; 57269039200; 57445084000; 59627553500; 57444644100; 14626725500; 7401774754; 57199644732; 57222647956; 57199983943 | mose79@kku.ac.kr;jwjung@dhu.ac.kr; | FOOD AND CHEMICAL TOXICOLOGY | FOOD CHEM TOXICOL | 0278-6915 | 1873-6351 | 161 | SCIE | FOOD SCIENCE & TECHNOLOGY;TOXICOLOGY | 2022 | 4.3 | 20.7 | 0.75 | 2025-06-25 | 9 | 8 | Leaves of Perilla frutescens; Amyloid beta; Aggregation; Alzheimer's disease; 5XFAD | MEMORY IMPAIRMENT; ACETYLCHOLINESTERASE INHIBITORS; CURCUMIN; PROTEIN; RELEASE; NEUROINFLAMMATION; DYSFUNCTION; FIBRILS; EXTRACT; ACID | 5XFAD; Aggregation; Alzheimer's disease; Amyloid β; Leaves of Perilla frutescens | Alzheimer Disease; Amyloid beta-Peptides; Animals; Female; Hippocampus; Male; Mice, Transgenic; Perilla frutescens; Plant Extracts; Plant Leaves; amyloid beta protein; curcumin; ethanol extract of leaves of Perilla frutescens; plant extract; unclassified drug; amyloid beta protein; plant extract; 5xFAD mouse; Alzheimer disease; animal cell; animal experiment; animal model; animal tissue; Article; concentration response; controlled study; female; hippocampus; long term potentiation; male; memory disorder; mouse; nervous system inflammation; neuropathology; nonhuman; passive avoidance; passive avoidance test; Perilla frutescens; plant leaf; protein aggregation; systemic therapy; Alzheimer disease; animal; chemistry; metabolism; pathology; Perilla frutescens; transgenic mouse | English | 2022 | 2022-03 | 10.1016/j.fct.2022.112847 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||
| ○ | ○ | Article | Asymmetrical PWM Scheme to Widen the Operating Range of the Three-Phase Series-Capacitor Buck Converter | The three-phase series-capacitor (3P-SC) buck converter is analyzed extensively in this study for high-voltage step-down applications with a wide input voltage range. This structure is attractive due to its high step-down conversion ratio and inherent current balancing. However, the inductor currents of the 3P-SC converter become unbalanced when the duty cycle exceeds 1/3. This results in significant stress and reduces the utilization of switching devices. This article proposes an asymmetrical pulsewidth modulation (PWM) scheme for the 3P-SC converter to overcome the limitations of the conventional PWM scheme. By using the proposed switching scheme, the duty cycle can be increased to one while retaining the high conversion ratio and current balancing functionality. Thereafter, the proposed asymmetrical PWM strategy is generalized for multiphase series-capacitor (nP-SC) converters. Finally, to validate the performance of the proposed PWM strategy, a 1.2-kW prototype 3P-SC converter is fabricated and tested. | Nguyen, Viet-Chan; Cha, Honnyong; Bui, Dai-Van | Kyungpook Natl Univ, Sch Energy Engn, Daegu 41566, South Korea | ; BUI, VAN-DAI/AAE-6202-2022; Bui, Van-Dai/AAE-6202-2022 | 57210827612; 24450248400; 57221961296 | ncviet93@gmail.com;chahonny@knu.ac.kr;buidai68@gmail.com; | IEEE JOURNAL OF EMERGING AND SELECTED TOPICS IN POWER ELECTRONICS | IEEE J EM SEL TOP P | 2168-6777 | 2168-6785 | 10 | 5 | SCIE | ENGINEERING, ELECTRICAL & ELECTRONIC | 2022 | 5.5 | 20.9 | 1.34 | 2025-06-25 | 9 | 18 | Pulse width modulation; Inductors; Power electronics; Switches; Logic gates; Buck converters; Voltage; Asymmetrical pulse width modulated (PWM); buck converter; interleaved; series capacitor (SC) | FREQUENCY | Asymmetrical pulse width modulated (PWM); buck converter; interleaved; series capacitor (SC) | Buck converter; Power electronics; Voltage control; Buck converters; Conversion ratio; Current balancing; Inductor; Modulation schemes; Power-electronics; Pulsewidth modulations (PWM); Series capacitors; Three phase; Three phasis; Pulse width modulation | English | 2022 | 2022-10 | 10.1109/jestpe.2022.3169336 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |
| ○ | ○ | Article | Down-Sampled Repetitive Controller for Grid-Connected Cuk CCM Inverter | The Cuk inverter operating in the continuous conduction mode (CCM) is susceptible to grid disturbances, and its transfer function has two right-half-plane zeros (RHPZs), which causes a large phase lag. To improve the output-tracking precision in the grid-connected environment, a repetitive controller (RC) with linear phase-lead compensation has been developed for the Cuk inverter. However, this controller requires a heavy computational burden and memory space; these problems become more severe as the converter operates at a higher switching frequency. This article proposes to use a down-sampled repetitive controller (DRC) for the Cuk CCM inverter to alleviate these problems. The down-sampling technique itself can significantly reduce the computational burden and memory space of RC. On the contrary, its control accuracy becomes very low, particularly for the Cuk CCM inverter. Unlike conventional module integrated inverters (MIIs), the Cuk CCM inverter must adopt a fractional-order phase-lead compensation algorithm to compensate for the effect of the large phase lag in the down-sampled environment. To clarify the inevitable usage of DRC with a fractional-order phase-lead compensation for Cuk CCM inverter, the DRC is classified into four types; this article provides its detailed design guideline based on stability analysis of the overall control system and also presents design examples for representative MIIs. Experiments using a 300-W prototype Cuk inverter validate that the proposed control approach achieves acceptable output-tracking accuracy. The total computation time and memory space with the DRC decrease by 76.0% and 80.0% compared to those with the conventional RC, while the output-tracking accuracy with the DRC decreases by 0.42%. | Han, Byeongcheol; Lai, Jih-Sheng; Kim, Minsung | Kyungpook Natl Univ, Sch Elect Engn, Daegu 41566, South Korea; Kyungpook Natl Univ, Sch Elect & Elect Engn, Daegu 41566, South Korea; Virginia Polytech Inst & State Univ, Virginia Tech, Future Energy Elect Ctr, Blacksburg, VA 24061 USA; Dongguk Univ, Div Elect & Elect Engn, Seoul 04620, South Korea | Han, Byeongcheol/W-7608-2019 | 57188622752; 56493805300; 57201445330 | hbychol@knu.ac.kr;laijs@vt.edu;mkim@dgu.ac.kr; | IEEE JOURNAL OF EMERGING AND SELECTED TOPICS IN POWER ELECTRONICS | IEEE J EM SEL TOP P | 2168-6777 | 2168-6785 | 10 | 1 | SCIE | ENGINEERING, ELECTRICAL & ELECTRONIC | 2022 | 5.5 | 20.9 | 0.74 | 2025-06-25 | 10 | 10 | Inverters; Control systems; Memory management; Switching frequency; Load modeling; Aerospace electronics; Switches; Digital signal processor; down-sampling technique; fractional-order phase-lead compensation; grid-connected inverter; right-half-plane zeros (RHPZs) | PHASE-LEAD COMPENSATION; STAND-ALONE; DESIGN | Digital signal processor; down-sampling technique; fractional-order phase-lead compensation; grid-connected inverter; right-half-plane zeros (RHPZs) | Electric inverters; Flight control systems; Switching frequency; Computational burden; Continuous conduction mode; Integrated inverter; Overall controls; Repetitive controller; Right half plane zero; Stability analysis; Total computation time; Controllers | English | 2022 | 2022-02 | 10.1109/jestpe.2021.3100014 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |
| ○ | ○ | Article | Analysis of virtual meson production in a (1+1)-dimensional scalar field model | Light-front time-ordered amplitudes are investigated in the virtual scalar meson production process in (1 thorn 1) dimensions using the scalar field model extended from the conventional Wick-Cutkosky model. There is only one Compton form factor (CFF) in the (1 thorn 1)-dimensional computation of the virtual meson production process, and we compute both the real and imaginary parts of the CFF for the entire kinematic regions of Q(2) > 0 and t . | Choi, Yongwoo; Choi, Ho-Meoyng; Ji, Chueng-Ryong; Oh, Yongseok | Kyungpook Natl Univ, Dept Phys, Daegu 41566, South Korea; Kyungpook Natl Univ, Teachers Coll, Dept Phys Educ, Daegu 41566, South Korea; North Carolina State Univ, Dept Phys, Raleigh, NC 27695 USA; Asia Pacific Ctr Theoret Phys, Pohang 37673, Gyeongbuk, South Korea | Ji, Chueng/J-2623-2013; Oh, Yongseok/A-2504-2008 | 57222064630; 7404339783; 57203068254; 7402125873 | sunctchoi@gmail.com;homyoung@knu.ac.kr;ji@ncsu.edu;yohphy@knu.ac.kr; | PHYSICAL REVIEW D | PHYS REV D | 2470-0010 | 2470-0029 | 105 | 9 | SCIE | ASTRONOMY & ASTROPHYSICS;PHYSICS, PARTICLES & FIELDS | 2022 | 5 | 21.0 | 0 | 2025-06-25 | 0 | 0 | DEEP INELASTIC-SCATTERING; RELATIVISTIC BOUND-STATE; LIGHT-FRONT MODEL; EXCLUSIVE PROCESSES; FORM-FACTORS; ASYMPTOTIC-BEHAVIOR; EVOLUTION-EQUATIONS; PERTURBATION-THEORY; FACTORIZATION; PROTON | English | 2022 | 2022-05-17 | 10.1103/physrevd.105.096014 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||||
| ○ | ○ | Article | Efficacy and Safety of Weekly Somatrogon vs Daily Somatropin in Children With Growth Hormone Deficiency: A Phase 3 Study | Context Somatrogon is a long-acting recombinant human growth hormone (rhGH) in development for once-weekly treatment of children with growth hormone deficiency (GHD). Objective We aimed to compare the efficacy and safety of once-weekly somatrogon with once-daily somatropin in prepubertal children with GHD. Methods In this 12-month, open-label, randomized, active-controlled, parallel-group, phase 3 study, participants were randomized 1:1 to receive once-weekly somatrogon (0.66 mg/kg/week) or once-daily somatropin (0.24 mg/kg/week) for 12 months. A total of 228 prepubertal children (boys aged 3-11 years, girls aged 3-10 years) with GHD, impaired height and height velocity (HV), and no prior rhGH treatment were randomized and 224 received >= 1 dose of study treatment (somatrogon: 109; somatropin: 115). The primary endpoint was annualized HV at month 12. Results HV at month 12 was 10.10 cm/year for somatrogon-treated subjects and 9.78 cm/year for somatropin-treated subjects, with a treatment difference (somatrogon-somatropin) of 0.33 (95% CI: -0.24, 0.89). The lower bound of the 2-sided 95% CI was higher than the prespecified noninferiority margin (-1.8 cm/year), demonstrating noninferiority of once-weekly somatrogon vs daily somatropin. HV at month 6 and change in height standard deviation score at months 6 and 12 were similar between both treatment groups. Both treatments were well tolerated, with a similar percentage of subjects experiencing mild to moderate treatment-emergent adverse events in both groups (somatrogon: 78.9%, somatropin: 79.1%). Conclusion The efficacy of once-weekly somatrogon was noninferior to once-daily somatropin, with similar safety and tolerability profiles. (ClinicalTrials.gov no. NCT02968004). | Deal, Cheri; Steelman, Joel; Vlachopapadopoulou, Elpis; Stawerska, Renata; Silverman, Lawrence A.; Phillip, Moshe; Kim, Ho-Seong; Ko, Cheol Woo; Malievskiy, Oleg; Cara, Jose F.; Roland, Carl L.; Taylor, Carrie Turich; Valluri, Srinivas Rao; Wajnrajch, Michael P.; Pastrak, Aleksandra; Miller, Bradley S. | Univ Montreal, Ctr Rech CHU Ste Justine, Montreal, PQ, Canada; Cook Childrens Med Ctr, Ft Worth, TX USA; Childrens Hosp P&A Kyriakou, Athens, Greece; Polish Mothers Mem Hosp, Res Inst, Lodz, Poland; Med Univ Lodz, Lodz, Poland; Goryeb Childrens Hosp, Atlantic Hlth Syst, Morristown, NJ USA; Schneider Childrens Med Ctr Israel, Petah Tiqwa, Israel; Tel Aviv Univ, Sackler Fac Med, Tel Aviv, Israel; Yonsei Univ, Coll Med, Seoul, South Korea; Kyungpook Natl Univ, Childrens Hosp, Daegu, South Korea; Bashkir State Med Univ, Ufa, Russia; Pfizer Inc, New York, NY USA; Pfizer Inc, Sanford, NC USA; NYU, Langone Med Ctr, New York, NY USA; OPKO Hlth, Miami, FL USA; Univ Minnesota, Masonic Childrens Hosp, Minneapolis, MN 55454 USA | ; Vlachopapadopoulou, Elpida/AFS-2972-2022 | 7006958731; 56165319100; 8216567800; 8317580600; 16481272500; 35493184100; 37031208400; 7202596445; 57194196051; 7004437047; 57756542200; 56452068900; 55090424800; 6602529298; 57756502200; 7403945069 | mille685@umn.edu; | JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM | J CLIN ENDOCR METAB | 0021-972X | 1945-7197 | 107 | 7 | SCIE | ENDOCRINOLOGY & METABOLISM | 2022 | 5.8 | 21.0 | 6.61 | 2025-06-25 | 58 | 58 | growth hormone; growth hormone deficiency; long-acting growth hormone; somatrogon; somatropin; pediatric | MOD-4023; THERAPY; BURDEN | growth hormone; growth hormone deficiency; long-acting growth hormone; pediatric; somatrogon; somatropin | Body Height; Child; Dwarfism, Pituitary; Female; Growth Disorders; Growth Hormone; Human Growth Hormone; Humans; Male; Recombinant Proteins; creatine kinase; human growth hormone; somatrogon; growth hormone; human growth hormone; recombinant protein; abdominal pain; anemia; arthralgia; Article; body height; bronchitis; child; controlled study; coughing; creatine kinase blood level; drug efficacy; drug safety; drug tolerability; female; fever; growth hormone deficiency; headache; height velocity; human; hypothyroidism; immunogenicity; injection site erythema; injection site pain; injection site pruritus; major clinical study; male; medication compliance; multicenter study; open study; oropharynx pain; otalgia; otitis media; parallel design; pediatrics; pharyngitis; phase 3 clinical trial; prepuberty; randomized controlled trial; rhinitis; rhinopharyngitis; side effect; tonsillitis; velocity; vomiting; clinical trial; growth disorder; pituitary dwarfism | English | 2022 | 2022-06-16 | 10.1210/clinem/dgac220 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |
| ○ | ○ | Article | First test of lepton flavor universality in the charmed baryon decays Ωc⁰ → Ω⁻l⁺νl using data of the Belle experiment | We present the first observation of the Omega(0)(c) -> Omega(-)mu(+)nu(mu) decay and present measurements of the branching fraction ratios of the Omega(0)(c) -> Omega(-)l(+)nu(l) decays compared to the reference mode Omega(0)(c) -> Omega(-)pi(+), (l = e or mu). This analysis is based on 89.5 fb(-1), 711 fb(-1), and 121.1 fb(-1) data samples collected with the Belle detector at the KEKB asymmetric-energy e(+)e(-) collider at the center-of-mass energies of 10.52 GeV, 10.58 GeV, and 10.86 GeV, respectively. The Omega(0)(c) signal yields are extracted by fitting M-Omega l' and M-Omega pi spectra. The branching fraction ratios B(Omega(0)(c) -> Omega(-)e(+)nu(e))/B(Omega(0)(c) -> Omega(-)pi(+)) and B(Omega(0)(c) -> Omega(-)mu(+)nu(mu))/B(Omega(0)(c) -> Omega(-)pi(+)) are measured to be 1.98 +/- 0.13(stat) +/- 0.08(syst) and 1.94 +/- 0.18(stat) +/- 0.10(syst), respectively. The ratio of B(Omega(0)(c) -> Omega(-)e(+)nu(e))/B(Omega c0 -> Omega(-)mu(+)nu(mu)) is measured to be 1.02 +/- 0.10(stat) +/- 0.02(syst), which is consistent with the expectation of lepton flavor universality. | Li, Y. B.; Shen, C. P.; Adachi, I.; Aihara, H.; Al Said, S.; Asner, D. M.; Atmacan, H.; Aushev, T.; Ayad, R.; Babu, V.; Bahinipati, S.; Behera, P.; Belous, K.; Bennett, J.; Bernlochner, F.; Bessner, M.; Bhuyan, B.; Bilka, T.; Bobrov, A.; Bodrov, D.; Borah, J.; Bozek, A.; Bracko, M.; Branchini, P.; Browder, T. E.; Budano, A.; Campajola, M.; Cervenkov, D.; Chang, M. -C.; Chang, P.; Chekelian, V.; 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.; Dash, N.; De Nardo, G.; De Pietro, G.; Dhamija, R.; Di Capua, F.; Dingfelder, J.; Dolezal, Z.; V. Dong, T.; Ferber, T.; Ferlewicz, D.; Fulsom, B. G.; Garg, R.; Gaur, V.; Gabyshev, N.; Giri, A.; Goldenzweig, P.; Golob, B.; Graziani, E.; Gudkova, K.; Hadjivasiliou, C.; Hara, T.; Hayasaka, K.; Hayashii, H.; Hedges, M. T.; Hou, W. -S.; Inami, K.; Inguglia, G.; Ishikawa, A.; Itoh, R.; Iwasaki, M.; Iwasaki, Y.; Jacobs, W. W.; Jang, E. -J.; Jia, S.; Jin, Y.; Joo, K. K.; Kahn, J.; Kang, K. H.; Kawasaki, T.; Kichimi, H.; Kiesling, C.; Kim, C. H.; Kim, D. Y.; Kim, K. -H.; Kim, K. T.; Kim, Y. -K.; Kinoshita, K.; Kodys, P.; Konno, T.; Korobov, A.; Korpar, S.; Kovalenko, E.; Krizan, P.; Kroeger, R.; Krokovny, P.; Kumar, M.; Kumar, R.; Kumara, K.; Kuzmin, A.; Kwon, Y. -J.; Lalwani, K.; Lam, T.; Laurenza, M.; Lee, S. C.; Li, J.; Li, L. K.; Li, Y.; Li Gioi, L.; Libby, J.; Lieret, K.; Liventsev, D.; Martini, A.; Masuda, M.; Matvienko, D.; Maurya, S. K.; Merola, M.; Miyabayashi, K.; Mizuk, R.; Mohanty, G. B.; Nakao, M.; Narwal, D.; Natochii, A.; Nayak, L.; Nayak, M.; Nisar, N. K.; Nishida, S.; Ogawa, K.; Ogawa, S.; Ono, H.; Oskin, P.; Pakhlov, P.; Pakhlova, G.; Pang, T.; Pardi, S.; Park, S. -H.; Patra, S.; Paul, S.; Pedlar, T. K.; Pestotnik, R.; Piilonen, L. E.; Podobnik, T.; Prencipe, E.; Prim, M. T.; Roehrken, M.; Rostomyan, A.; Rout, N.; Russo, G.; Sahoo, D.; Sandilya, S.; Sangal, A.; Santelj, L.; Savinov, V.; Schnell, G.; Schueler, J.; Schwanda, C.; Seino, Y.; Senyo, K.; Sevior, M. E.; Shapkin, M.; Sharma, C.; Shebalin, V.; Shiu, J. -G.; Shwartz, B.; Singh, J. B.; Sokolov, A.; Solovieva, E.; Staric, M.; Stottler, Z. S.; Sumihama, M.; Sumiyoshi, T.; Takizawa, M.; Tamponi, U.; Tanida, K.; Tenchini, F.; Uchida, M.; Uglov, T.; Unno, Y.; Uno, K.; Uno, S.; Urquijo, P.; Vahsen, S. E.; Van Tonder, R.; Varner, G.; Vinokurova, A.; Waheed, E.; Wang, D.; Wang, E.; Wang, M. -Z.; Watanuki, S.; Won, E.; Xu, X.; Yabsley, B. D.; Yan, W.; Yang, S. B.; Ye, H.; Yelton, J.; Yin, J. H.; Yuan, C. Z.; Yusa, Y.; Zhai, Y.; 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, Budker Inst Nucl Phys SB, Novosibirsk 630090, Russia; Charles Univ Prague, Fac Math & Phys, Prague 12116, Czech Republic; Chonnam Natl Univ, Gwangju 61186, South Korea; Chung Ang Univ, Seoul 06974, South Korea; Univ Cincinnati, Cincinnati, OH 45221 USA; DESY, D-22607 Hamburg, Germany; Duy Tan Univ, Inst Theoret & Appl Res ITAR, Hanoi 100000, Vietnam; Univ Florida, Gainesville, FL 32611 USA; Fu Jen Catholic Univ, Dept Phys, Taipei 24205, Taiwan; Fudan Univ, Key Lab Nucl Phys & Ionbeam Applicat MOE, Shanghai 200443, Peoples R China; Fudan Univ, Inst Modern Phys, Shanghai 200443, Peoples R China; Gifu Univ, Gifu 5011193, Japan; Grad Univ Adv Studies, SOKENDAI, 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 Org, KEK, Tsukuba, Ibaraki 3050801, Japan; High Energy Accelerator Org, KEK Theory Ctr, J PARC Branch, 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; INFN, Sez Napoli, I-80126 Naples, Italy; INFN, Sez Roma Tre, I-00146 Rome, Italy; INFN, Sez Torino, I-10125 Turin, Italy; Iowa State Univ, Ames, IA 50011 USA; Japan Atom Energy Agcy, Adv Sci Res Ctr, Naka, Ibaraki 3191195, Japan; J Stefan Inst, Ljubljana 1000, Slovenia; Karlsruhe Inst Technol, Inst Expt Teilchenphys, D-76131 Karlsruhe, Germany; Univ Tokyo, Kavli Inst Phys & Math Universe WPI, Kashiwa, Chiba 2778583, Japan; King Abdulaziz Univ, Fac Sci, Dept Phys, Jeddah 21589, Saudi Arabia; Kitasato Univ, Sagamihara, Kanagawa 2520373, Japan; Korea Inst Sci & Technol Informat, Daejeon 34141, South Korea; Korea Univ, Seoul 02841, South Korea; Kyungpook Natl Univ, Daegu 41566, South Korea; 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; 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 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; Univ Pittsburgh, Pittsburgh, PA 15260 USA; Punjab Agr Univ, Ludhiana 141004, Punjab, India; Osaka Univ, Res Ctr Nucl Phys, Osaka 5670047, Japan; RIKEN, Cluster Pioneering Res, Meson Sci Lab, Wako, Saitama 3510198, Japan; Univ Rome 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; Showa Pharmaceut Univ, Tokyo 1948543, Japan; Soochow Univ, Suzhou 215006, Peoples R China; Soongsil Univ, Seoul 06978, South Korea; Sungkyunkwan Univ, Suwon 16419, South Korea; Univ Sydney, Sch Phys, Sydney, NSW 2006, Australia; Univ Tabuk, Fac Sci, Dept Phys, Tabuk 71451, Saudi Arabia; Tata Inst Fundamental Res, Mumbai 400005, Maharashtra, India; Tech Univ Munich, Dept Phys, D-85748 Garching, Germany; Tel Aviv Univ, Sch Phys & Astron, IL-69978 Tel Aviv, Israel; Toho Univ, Funabashi, Chiba 2748510, 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 | Sandilya, Saurabh/AAR-2477-2021; Choudhury, Seema/LEM-7962-2024; Cervenkov, Daniel/D-2884-2017; de pietro, giuseppe/L-6139-2019; Li, Longke/MSZ-3796-2025; Aihara, Hiroaki/F-3854-2010; Iwasaki, Masako/AAG-6574-2019; zhang, xu/JXX-7692-2024; wang, zhifei/KVB-1065-2024; Kumar, Rajender/JSL-0696-2023; Lavezzi, Lia/AAO-9660-2021; ISHIKAWA, Akimasa/AAG-9668-2020; Al Said, S./J-1465-2016; Dong, Thanh/MIT-2305-2025; Waheed, Eiasha/AAG-6743-2021; Korobov, Alexandr/G-7402-2018; Križan, Peter/L-7809-2016; Popov, Vitaliy/C-9925-2016; Zhukova, Valentina/C-8878-2016; Nellikunnummel, Nisar/AAY-7200-2021; Kim, Ji Hoon/AAB-4602-2022; Chilikin, Kirill/B-4402-2014; Solovieva, Elena/B-2449-2014; Sumiyoshi, Takayuki/Q-5536-2017; Doležal, Zdeněk/K-6861-2017; Liventsev, Dmitri/MYR-0735-2025; Aushev, Tagir/AAN-9735-2020; Kodys, Peter/P-2636-2017; Tamponi, Umberto/AGG-5576-2022; Won, Eunil/S-7182-2019; Li, Jiarong/ABG-6750-2022; Pestotnik, Rok/A-3626-2008; sun, jian/H-2376-2015; branchini, paolo/A-4857-2011; Dhamija, Ritika/AAD-1338-2022; Bodrov, Denis/AAH-3024-2021; Shimizu, Noritaka/AHE-7477-2022; Chang, Philip/AAN-3350-2021; BABU, JENSY/KAM-3345-2024; Paul, Stephan/F-7596-2015; Wang, Shaohui/HKO-6774-2023; Maurya, Sudhanshu/I-6218-2015; Dash, Nibedita/ABA-4232-2021; Praks, Pavel/A-6243-2010; Pachariya, Manoj/A-9646-2016; Pang, Peter Tsun Ho/JCD-5182-2023; Bilka, Tadeáš/Q-3680-2017; Campajola, Marcello/V-1689-2019; Mizuk, Roman/B-3751-2014; Uglov, Timofey/B-2406-2014; Pakhlov, Pavel/K-2158-2013; Oskin, Pavel/AAB-5345-2020; Singh, J B/IXD-2130-2023; Kovalenko, Evgeniy/AAL-6514-2021; Gaur, Vipin/HZM-4280-2023; Shwartz, Boris/N-2673-2014; Maurya, PhD, Dr. Sudhanshu/ABI-6691-2020; Cheon, Byung/B-3035-2008; Kumar, Abhishek/KCL-4676-2024; Tenchini, Francesco/JTT-8673-2023 | 58754147400; 35227999800; 35226935400; 26431253400; 24764515900; 35226924300; 35228789100; 35226925000; 36473131000; 56673779100; 35226929900; 57943353600; 35226926800; 35313360100; 35228802000; 57208362193; 57830739900; 56624583600; 25926337000; 57222257424; 57219109240; 57225386308; 35271332600; 7007185851; 35226974400; 35276918200; 57201115046; 55913471500; 35225729000; 58772580500; 8062452000; 35227071900; 35271166300; 57225375986; 57207576178; 57207798241; 57216645386; 35227095000; 59110376400; 57767118500; 57215682164; 55368264400; 56985709800; 35227136100; 57206305017; 57219795668; 57208830718; 35227134400; 57214699347; 57488886000; 15126870300; 57211204300; 35227244500; 57219588212; 37074665000; 35227272700; 7102961266; 35233679700; 35227277400; 7006321472; 57219331214; 15848423500; 7404213171; 35227356500; 35227353100; 15925464600; 59454509100; 56522611500; 54881461100; 35227389900; 7103061159; 35227405400; 56522275200; 7201781287; 57212275346; 57194692653; 59299091500; 35227379900; 57196259512; 57224903543; 35227364200; 35227523300; 8062452400; 57199973280; 35225891500; 57220563163; 59774324500; 59734007100; 35227494800; 14826956800; 53063887800; 57170079600; 57080476200; 57222187903; 10639485800; 35227502900; 57208069443; 58018872200; 55553737220; 57216645334; 57205335932; 56419217900; 46661127500; 57231827000; 57223968999; 57257924100; 55870040700; 57202345327; 26867892800; 55820982400; 57211034012; 56812540000; 57204078384; 56779517600; 18536939900; 58674542700; 36876647700; 56235238900; 35227750200; 35227732200; 57203524033; 57355100100; 57194197815; 57219797292; 55631815900; 55632289100; 57219627811; 57215134786; 35227762800; 7401965457; 57211715084; 35227740400; 35234620700; 57211082131; 6602539790; 57207467557; 57219437245; 7401979314; 35227847800; 35227892100; 57205388346; 35227932600; 35227850000; 36099403700; 35732304700; 8721811800; 57213625981; 7202429853; 57215857178; 56985930800; 57215862663; 35590850800; 56482852900; 8721812700; 57204956418; 35228014600; 56985327200; 57214214242; 35227980100; 35227994200; 57221053071; 57222997386; 55628572552; 7004048116; 57217455860; 57212378611; 25958374200; 35227948400; 57204951723; 6603406495; 55554740400; 35942976800; 57236402500; 8388152800; 37103051300; 57219721118; 35228072600; 59828691600; 59498189200; 35228086800; 35228106200; 57222995522; 57204557858; 35228075800; 35273620100; 57193702443; 59051948700; 58858085200; 35228078700; 57014809700; 35274124300; 57221066125; 56433757500; 55966462800; 57204951807; 55286044100; 57223951701; 56449839600; 35228236100; 55145482100; 59592216900; 59640793400; 35228211600; 57990888000 | PHYSICAL REVIEW D | PHYS REV D | 2470-0010 | 2470-0029 | 105 | 9 | SCIE | ASTRONOMY & ASTROPHYSICS;PHYSICS, PARTICLES & FIELDS | 2022 | 5 | 21.0 | 2.1 | 2025-06-25 | 13 | 24 | HEAVY; IDENTIFICATION; PHYSICS; HADRON | English | 2022 | 2022-05-16 | 10.1103/physrevd.105.l091101 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |||||
| ○ | ○ | Editorial Material | Guest editorial: Digital transformation and consumer experience | Koo, Dong-Mo; Kim, Jungkeun; Kim, Taewan | Kyungpook Natl Univ, Dept Hydrogen & Renewable Energy, Daegu, South Korea; Auckland Univ Technol, Auckland, New Zealand; Konkuk Univ, Seoul, South Korea | kim, taewan/AAM-6887-2020; Koo, Dong-Mo/AAG-5411-2021; Kim, Jungkeun/AAE-7216-2020 | 14121485100; 36995765400; 57203972121 | unlimited@knu.ac.kr;jkkim@aut.ac.nz;tkim21@konkuk.ac.kr; | INTERNET RESEARCH | INTERNET RES | 1066-2243 | 32 | 3 | SSCI;SCIE | BUSINESS;COMPUTER SCIENCE, INFORMATION SYSTEMS;TELECOMMUNICATIONS | 2022 | 5.9 | 21.0 | 4.27 | 2025-06-25 | 8 | 9 | English | 2022 | 2022-05-09 | 10.1108/intr-04-2022-684 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |||||||
| ○ | ○ | Article | Heavier W boson, dark matter, and gravitational waves from strings in an SO(10) axion model | Inspired by the recent determination of the W-boson mass by the CDF collaboration, we revisit an SO(10) axion model in which a scalar SU(2)(L) triplet field with zero hypercharge is known to acquire a nonzero vacuum expectation value (VEV) through its mixing with the Standard Model Higgs doublet. The triplet VEV provides a sizable contribution to the W mass, which helps in significantly lowering the 7 sigma discrepancy between the Standard Model prediction and the higher CDF value for m(W). We show that the relatively light triplet mass (similar to(1-50) TeV) is compatible with gauge coupling unification and observable proton decay. An unbroken Z(2) gauge symmetry, coupled with the presence of two fermionic 10-plets required to resolve the axion domain wall problem means that both axions and a stable intermediate mass (similar to 10(9)-10(10) GeV) fermion are plausible dark matter candidates. We also display the gravitational wave spectrum from the intermediate scale topologically stable cosmic strings predicted by the model. | Lazarides, George; Maji, Rinku; Roshan, Rishav; Shafi, Qaisar | Aristotle Univ Thessaloniki, Fac Engn, Sch Elect & Comp Engn, Thessaloniki 54124, Greece; Phys Res Lab, Theoret Phys Div, Ahmadabad 380009, Gujarat, India; Kyungpook Natl Univ, Dept Phys, Daegu 41566, South Korea; Univ Delaware, Bartol Res Inst, Dept Phys & Astron, Newark, DE 19716 USA | 7004661081; 57202461840; 57211218592; 7004752140 | PHYSICAL REVIEW D | PHYS REV D | 2470-0010 | 2470-0029 | 106 | 5 | SCIE | ASTRONOMY & ASTROPHYSICS;PHYSICS, PARTICLES & FIELDS | 2022 | 5 | 21.0 | 2.01 | 2025-06-25 | 22 | 22 | COSMOLOGY; GRAVITY | English | 2022 | 2022-09-06 | 10.1103/physrevd.106.055009 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||||||
| ○ | ○ | Article | Inclusive nonresonant multilepton probes of new phenomena at √s=13 TeV | An inclusive search for nonresonant signatures of beyond the standard model (SM) phenomena in events with three or more charged leptons, including hadronically decaying tau leptons, is presented. The analysis is based on a data sample corresponding to an integrated luminosity of 138 fb(-1) of proton-proton collisions at root s = 13 TeV, collected by the CMS experiment at the LHC in 2016-2018. Events are categorized based on the lepton and b-tagged jet multiplicities and various kinematic variables. Three scenarios of physics beyond the SM are probed, and signal-specific boosted decision trees are used for enhancing sensitivity. No significant deviations from the background expectations are observed. Lower limits are set at 95% confidence level on the mass of type-III seesaw heavy fermions in the range 845-1065 GeV for various decay branching fraction combinations to SM leptons. Doublet and singlet vectorlike tau lepton extensions of the SM are excluded for masses below 1045 GeV and in the mass range 125-150 GeV, respectively. Scalar leptoquarks decaying exclusively to a top quark and a lepton are excluded below 1.12-1.42 TeV, depending on the lepton flavor. For the type-III seesaw as well as the vectorlike doublet model, these constraints are the most stringent to date. For the vectorlike singlet model, these are the first constraints from the LHC experiments. Detailed results are also presented to facilitate alternative theoretical interpretations. | Tumasyan, A.; Adam, W.; Andrejkovic, J. W.; Bergauer, T.; Chatterjee, S.; Damanakis, K.; Dragicevic, M.; Del Valle, A. Escalante; Fruhwirth, R.; Jeitler, M.; Krammer, N.; Lechner, L.; Liko, D.; Mikulec, I; Paulitsch, P.; Pitters, F. M.; Schieck, J.; Schofbeck, R.; Schwarz, D.; Templ, S.; Waltenberger, W.; Wulz, C-E; Chekhovsky, V; Litomin, A.; Makarenko, V; Darwish, M. R.; De Wolf, E. A.; Janssen, T.; Kello, T.; Lelek, A.; Sfar, H. Rejeb; Van Mechelen, P.; Van Putte, S.; Van Remortel, N.; Blekman, F.; Bols, E. S.; D'Hondt, J.; Delcourt, M.; El Faham, H.; Lowette, S.; Moortgat, S.; Morton, A.; Muller, D.; Sahasransu, A. R.; Tavernier, S.; Van Doninck, W.; Vannerom, D.; Beghin, D.; Bilin, B.; Clerbaux, B.; De Lentdecker, G.; Favart, L.; Kalsi, A. K.; Lee, K.; Mahdavikhorrami, M.; Makarenko, I; Moureaux, L.; Paredes, S.; Petre, L.; Popov, A.; Postiau, N.; Starling, E.; Thomas, L.; Vanden Bemden, M.; Vander Velde, C.; Vanlaer, P.; Cornelis, T.; Dobur, D.; Knolle, J.; Lambrecht, L.; Mestdach, G.; Niedziela, M.; Rendon, C.; Roskas, C.; Samalan, A.; Skovpen, K.; Tytgat, M.; Vermassen, B.; Wezenbeek, L.; Benecke, A.; Bethani, A.; Bruno, G.; Bury, F.; Caputo, C.; David, P.; Delaere, C.; Donertas, I. S.; Giammanco, A.; Jaffel, K.; Jain, Sa; Lemaitre, V; Mondal, K.; Prisciandaro, J.; Taliercio, A.; Teklishyn, M.; Tran, T. T.; Vischia, P.; Wertz, S.; Alves, G. A.; Hensel, C.; Moraes, A.; Teles, P. Rebello; Alda Junior, W. L.; Gallo Pereira, M. Alves; Ferreira Filho, M. Barroso; Malbouisson, H. Brandao; Carvalho, W.; Chinellato, J.; Da Costa, E. M.; Da Silveira, G. G.; Damiao, D. De Jesus; Sousa, V. Dos Santos; De Souza, S. Fonseca; Herrera, C. Mora; Amarilo, K. Mota; Mundim, L.; Nogima, H.; Santoro, A.; Silva Do Amaral, S. M.; Sznajder, A.; Thiel, M.; Da Silva De Araujo, F. Torres; Pereira, A. Vilela; Bernardes, C. A.; Calligaris, L.; Fernandez Perez Tomei, T. R.; Gregores, E. M.; Lemos, D. S.; Mercadante, P. G.; Novaes, S. F.; Padula, Sandra S.; Aleksandrov, A.; Antchev, G.; Hadjiiska, R.; Iaydjiev, P.; Misheva, M.; Rodozov, M.; Shopova, M.; Sultanov, G.; Dimitrov, A.; Ivanov, T.; Litov, L.; Pavlov, B.; Petkov, P.; Petrov, A.; Cheng, T.; Javaid, T.; Mittal, M.; Yuan, L.; Ahmad, M.; Bauer, G.; Dozen, C.; Hu, Z.; Martins, J.; Wang, Y.; Yi, K.; Chapon, E.; Chen, G. M.; Chen, H. S.; Chen, M.; Iemmi, F.; Kapoor, A.; Leggat, D.; Liao, H.; Liu, Z-A; Milosevic, V; Monti, F.; Sharma, R.; Tao, J.; Thomas-Wilsker, J.; Wang, J.; Zhang, H.; Zhao, J.; Agapitos, A.; An, Y.; Ban, Y.; Chen, C.; Levin, A.; Li, Q.; Lyu, X.; Mao, Y.; Qian, S. J.; Wang, D.; Xiao, J.; Yang, H.; Lu, M.; You, Z.; Gao, X.; Okawa, H.; Zhang, Y.; Lin, Z.; Xiao, M.; Avila, C.; Cabrera, A.; Florez, C.; Fraga, J.; Mejia Guisao, J.; Ramirez, F.; Ruiz Alvarez, J. D.; Salazar Gonzalez, C. A.; Giljanovic, D.; Godinovic, N.; Lelas, D.; Puljak, I; Antunovic, Z.; Kovac, M.; Sculac, T.; Brigljevic, V; Ferencek, D.; Majumder, D.; Roguljic, M.; Starodumov, A.; Susa, T.; Attikis, A.; Christoforou, K.; Ioannou, A.; Kole, G.; Kolosova, M.; Konstantinou, S.; Mousa, J.; Nicolaou, C.; Ptochos, F.; Razis, P. A.; Rykaczewski, H.; Saka, H.; Finger, M.; Finger, M., Jr.; Kveton, A.; Ayala, E.; Jarrin, E. Carrera; Elgammal, S.; Kamel, A. Ellithi; Mahmoud, M. A.; Mohammed, Y.; Bhowmik, S.; Dewanjee, R. 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Ozyegin Univ, Istanbul, Turkey; Univ Southampton, Sch Phys & Astron, Southampton, Hants, England; IPPP Durham Univ, Durham, England; Monash Univ, Fac Sci, Clayton, Vic, Australia; Bethel Univ, Minneapolis, MN USA; Karamanoglu Mehmetbey Univ, Karaman, Turkey; US Naval Acad, Annapolis, MD 21402 USA; Ain Shams Univ, Cairo, Egypt; Bingol Univ, Bingol, Turkey; Sinop Univ, Sinop, Turkey; Erciyes Univ, Kayseri, Turkey; Texas A&M Univ Qatar, Doha, Qatar | ; Vischia, Pietro/AAB-7811-2021; Sarkar, Debojit/GNW-6585-2022; Finco, Linda/AAH-3618-2019; Missiroli, Marino/AAA-9072-2021; Venditti, Rosamaria/IVH-5947-2023; Kim, Tae/AAV-5521-2020; Güler, Ali Murat/ABB-3382-2020; Khakzad, Mohsen/ABB-1945-2021; Lannon, Kevin/HGU-5755-2022; Joo, Changwoo/ABI-4034-2020; Torres, Felipe/ABA-9751-2020; Arcidiacono, Roberta/ABF-3918-2020; Popov, Vitaliy/C-9925-2016; Kim, Victor/L-1648-2013; Biino, Cristina/AAF-1585-2020; Paganoni, Marco/A-4235-2016; Mejia Guisao, Jhovanny/ABG-3627-2021; Gregores, Eduardo/F-8702-2012; 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Bossini, Edoardo/AAA-4972-2020; staiano, amedeo/KVB-8364-2024; Khvedelidze, Arsen/AAF-5025-2020; Malvezzi, Sandra/B-8524-2009; Verwilligen, Piet/AAA-8819-2019; ciocci, maria/I-2153-2015; Kratochwil, Nicolaus/ACR-4384-2022; Verma, Rajnish/JNR-6933-2023; Csanad, Mate/D-5960-2012; Lokhtin, Igor/D-7004-2012; Leonidov, Andrey/P-3197-2014; ÇAKIR, Ali/JMC-5065-2023; Hong, Byungsik/O-8359-2018; Dai, Yuxiang/JGC-6867-2023; Parygin, Pavel/C-8908-2016; zhang, chen/JES-0371-2023; Martinelli, Maurizio/AAC-8282-2021; Jain, Shikha/ADG-6788-2022; Osherson, Marc/LWZ-8687-2024; ZHANG, JIANWEN/JMQ-9363-2023; Xiao, Min/F-6184-2013; Bermudez Martinez, Armando/HHN-4625-2022; chen, yue/JEF-2824-2023; Klyukhin, Vyacheslav/D-6850-2012; tosi, mia/J-5777-2012; Roguljic, Matej/NMJ-5801-2025; Borg, Jacqueline/AFS-8793-2022; Raicevic, Natasa/ABD-5889-2020; Zaleski, Stéphane/N-8879-2017; SHARMA, RAM/MIO-2784-2025; Asavapibhop, Burin/X-1477-2019; Poudyal, Nabin/AAA-7981-2020; Pantaleo, Francesca/AAV-4919-2020; Liu, Tong/JDM-9629-2023; Ivanov, Andrew/A-7982-2013; Sánchez-Rodríguez, Alexander/JLK-9336-2023; Elgammal, Sherif/KGM-3809-2024; Bourilkov, Dimitri/AAO-4908-2020; Ruhlmann-Kleider, Vanina/AGJ-4460-2022; lin, yuan/JXL-9592-2024; Saka, Halil/GPF-8892-2022; Smirnov, Vitaly/B-5001-2017; gomez, marina/I-7072-2012; My, Salvatore/HTM-1335-2023; Malbouisson, H./N-6733-2015; Sculac, Toni/AAE-4141-2019; Květoň, Antonín/AAA-9178-2020; Savina, Maria/HDO-6544-2022; Kovac, Marko/D-5817-2017; Salerno, Roberto/A-7509-2010; celik, Ali/A-3563-2019; Saa Hernandez, Angela/GVS-1359-2022; Melo da Costa, Eliza/AAX-2394-2021; Hollar, Jonathan/KZU-8312-2024; Paoletti, Simone/R-2295-2016; Salvini, Paola/G-1670-2018; Chadeeva, Marina/C-8789-2016; Maier, Benedikt/AAN-1929-2021; Josa, Isabel/K-5184-2014; Petrolini, Alessandro/H-3782-2011; Gonzalez, Arely/I-1034-2015; Bilican, Fuat/AGD-3089-2022; Calligaris, Luigi/K-2018-2017; Isildak, Bora/D-8829-2015; Calderon, Alicia/K-3658-2014; Tomei, Thiago/E-7091-2012; Singh, J B/IXD-2130-2023; Radics, Balint/AAN-2721-2020; Cepeda, María/HNO-9314-2023; Yuldashev, Bekhzod/AAA-5876-2021; Fouz, Maria Cruz/AAF-1105-2019; Shukla, Prashant/MZS-4135-2025; Tsirou, Andromachi/HHC-6869-2022; Okhotnikov, Vitalii/O-4293-2017; Paramatti, Riccardo/IXW-6363-2023; Mondal, Santu/GSE-1742-2022; Bunichev, Viacheslav/E-2285-2012; Cimmino, Anna/AAA-1673-2020; Terkulov, Adel/M-8581-2015; Ovtin, Ivan/AAM-8892-2021; Novak, Tibor/JGE-0651-2023; Varela, Joao/K-4829-2016; Pásztor, Gabriella/D-9716-2016; Piedra, Jónatan/F-3247-2018; da Cruz e Silva, Cristóvão/KVA-3786-2024; De Filippis, Nicola/AAD-6280-2019; Donato, Silvio/GPK-2262-2022; Simsek, Ali Eren/AFO-3050-2022; Giommi, Luca/AGV-7154-2022; Mulders, Martijn/AGK-9612-2022; Bunkowski, Karol/KOD-1567-2024; Maselli, Silvia/J-1599-2012; Venturi, Andrea/J-1877-2012; Di Mattia, Alessandro/HNQ-0365-2023; Azzi, Patrizia/H-5404-2012; Wulz, Claudia-Elisabeth/H-5657-2011; Cadamuro, Luca/AAO-8637-2020; Forthomme, Laurent/AFS-8908-2022; Alison, Jamie/AAD-5013-2022; Govoni, Pietro/K-9619-2016; Rossi, Biagio/F-4137-2018; Mignerey, Alice/D-6623-2011; Fedi, Giacomo/IRZ-8694-2023; Gulmez, Erhan/P-9518-2015; Hebbeker, Thomas/L-4073-2013; Konecki, Marcin/G-4164-2015; Ceccarelli, Rudy/JTU-5218-2023; Gavrilov, Gennadii/GRO-6222-2022; Scodellaro, Luca/K-9091-2014; Rolandi, Luigi/E-8563-2013; Roy Chowdhury, Suvankar/IXN-7230-2023; Wozniak, Krzysztof/Q-7754-2019; KÖMÜRCÜ, YILDIRAY/AAC-6166-2020; Rivero, Celso/V-6916-2017; Kardapoltsev, Leonid/AAQ-4047-2021; Morovic, Srecko/T-9019-2019; Dremin, Igor/K-8053-2015; Ciulli, Vitaliano/ABC-5440-2020; White, Ryan/E-2979-2015; Bernardes, Cesar Augusto/D-2408-2015; Zhang, Jixie/A-1461-2016; Voevodina, Elena/G-7314-2016; Gupta, Rajat/GVS-7964-2022; Ruiz Jimeno, Alberto/E-4473-2011; Calderon, Dr. Alicia/K-3658-2014; LEITON, ANA/ABH-9538-2020; Schwarz, Dominik/A-7681-2010; Wuchterl, Sebastian/LOU-0041-2024; Meijers, Femke/IUM-7952-2023; González Caballero, Isidro/E-7350-2010; KIM, Tae/P-7848-2015; Hoorani, Hafeez/D-1791-2013; Ristic, Branko/J-9948-2017; Ciangottini, Diego/HJH-5914-2023; Jang, Wooyoung/HTT-2559-2023; Voytishin, Nikolay/IYJ-7234-2023; Martin Perez, Cristina/MEP-9682-2025; Tiras, Emrah/ABG-2354-2020; Gleyzer, Sergei/AAE-6726-2020; Malakhov, Alexander/D-5702-2016; Cankocak, Kerem/A-1507-2018; Ozkorucuklu, Suat/AAE-7535-2020; Boimska, Bozena/Z-6088-2019; Lu, Rui/KCJ-8212-2024; Iorio, Alberto Orso Maria/GXA-0233-2022; D'Alessandro, Raffaello/P-4138-2019; Gerosa, Raffaele/AGL-6079-2022; Blekman, Freya/ABD-7916-2020; Gozalez-Lopez, Oscar/AAH-3533-2019; Flore, Carlo/HZJ-6377-2023; Petrucciani, Giovanni/AAM-8482-2020; Barreto, Lucas/J-9426-2013; Spiga, Daniele/ABB-8842-2021; Chadeeva, Marina/M-9644-2019; de guio, federico/B-8553-2009; Dhingra, Nitish/ABA-9507-2020; Ligabue, Franco/F-3432-2014; Kumar, Parveen/I-3259-2015; Belyaev, Alexander/F-6637-2015; BARRILLON, Stephanie/ABA-6873-2021; Menasce, Dario/A-2168-2016; Battilana, Carlo/AAA-7345-2020; Steggemann, Jan/AAL-5700-2020; Marlow, Daniel/C-9132-2014; Errico, Filippo/AAD-7755-2019; Demiroglu, Zuhal Seyma/A-5168-2016; Belyaev, Andrey/E-1540-2012; Lychkovskaya, Natalia/F-8341-2017; Obertino, Maria/ABH-1662-2020; Giammanco, Andrea/O-5017-2019; Skovpen, Kirill/HKM-3974-2023; Fasanella, Daniele/ABD-9759-2020; MAESTRE, JUAN/I-5763-2015; Androsov, Konstantin/HJA-2332-2022; Novaes, Sergio/D-3532-2012; Rabady, Dinyar/GSN-9210-2022; Xie, Si/O-6830-2016; Moscatelli, Francesco/N-6333-2014; Vala, Martin/HZL-1003-2023; Bertacchi, Valerio/KFQ-6990-2024; Kim, Geuk-Nam/IAO-4628-2023; Shopova, Mariana/HKW-0149-2023; Fiorendi, Sara/ABA-3311-2021; Wittich, Peter/HOH-5761-2023; zhang, wen/JXN-0191-2024; Garutti, Erika/NRY-4813-2025; Ranieri, Antonio/E-9545-2015; xin, liang/JFS-5770-2023; Kaur, Harjot/KJM-6607-2024; Ahmad, Anwar/ABM-2215-2022; liu, wenli/JRW-0517-2023; Hildreth, Michael/LWK-8035-2024; Pellecchia, Antonello/KZV-0289-2024; Ryutin, Roman/P-3615-2015; Padula, Sandra/AAE-4304-2020; Canelli, Florencia/AAI-1616-2021; Akgun, Bora/AAM-8311-2021; Li, Yufeng/M-2954-2013; Jafari, Abideh/JVP-2320-2024; Wang, Shaohui/HKO-6774-2023; Sznajder, Andre/L-1621-2016; Kumar, Vijay/G-4290-2011; Bainbridge, Robert/JRW-6150-2023; Caspart, Rene/LNQ-1560-2024; Ahmad, Muhammad/LBH-2342-2024; Hobson, Peter/C-8919-2016; MantillaSuarez, Cristina/LWK-8416-2024; Kim, Mee/E-7234-2015; Negrini, Matteo/C-8906-2014; Misheva, Mihaela/AEK-6084-2022; Doroba, krzysztof/AAA-3419-2021; Minafra, Nicola/AAZ-6781-2020; Ievgeniia, Makarenko/ABF-9828-2021; Lowette, Steven/HKV-3341-2023; Cipriani, Marco/MHU-3780-2025; Vilela Pereira, Antonio/L-4142-2016; Pompili, Alexis/ISU-8813-2023; Seixas, Joao/F-5441-2013; Reyes-Almanza, Rogelio/GQJ-8236-2022; Delgado Peris, Antonio/AAA-5165-2019; ASILAR, Ece/ABC-4577-2020; Sharma, Vandana/MDT-7486-2025; Sonnadara, Upul/E-6359-2010; Kalsi, Amandeep Kaur/JNR-9607-2023; Dutta, Ipsita/JDW-8207-2023; My, Salvatore/I-5160-2015; Goy Lopez, Silvia/K-9200-2017; Ince Lezki, Merve/AAG-5283-2021; LU, JUN-QIANG/B-9511-2008; Fallavollita, Francesco/AAL-8850-2020; Verdini, Piero/J-2839-2012; Puljak, Ivica/D-8917-2017; de Jesus Damiao, Dilson/G-6218-2012; Spagnolo, Paolo/G-3401-2017; Kumar, Saroj/AAU-5615-2021; Xu, Qiao/AAM-9242-2020; Gong, Caifeng/HOA-5533-2023; Mercadante, Pedro/K-1918-2012; Babaev, Anton/U-5457-2019; Romero, Luciano/B-8917-2018; Lokos, Sandor/A-4798-2019; Navarro-Tobar, Álvaro/K-7864-2014; Pastrone, Nadia/JRZ-0528-2023; Yang, Hongyan/J-9826-2014; KAYİS TOPAKSU, Aysel/B-8910-2018; Tuo, Shengquan/ABA-9032-2021; Nandan, Saswati/JVY-9235-2024; Hill, Christopher/B-5371-2012; Mrenna, Stephen/KIL-6081-2024; buotempo, salvatore/B-5210-2012; Amoroso, Simone/AAW-4334-2021; Sanchez, Federico/F-5809-2012; Dewanjee, Ram Krishna/AFE-3468-2022; Seidel, Marcus/AAA-4799-2022; Kirakosyan, Martin/N-2701-2015; Creanza, Donato/KIC-8791-2024; Hegeman, Jeroen/HJA-1005-2022; Lander, Roddy/KQU-7736-2024; Yalvac, Metin/LYP-1776-2024; Mohammadi Najafabadi, Mohammad/GLR-0213-2022; Liu, Zhibo/A-4568-2018; Grynyov, Borys/D-1714-2010; Grandi, Claudio/B-5654-2015; de Souza Sandro, Fonseca/ABB-8505-2020; Dudko, Lev/D-7127-2012; Zalewski, Piotr/H-7335-2013; Dermenev, Alexander/M-4979-2013; Nguyen, Vu/AAQ-5062-2020; Castilla-Valdez, Heriberto/F-8906-2019; Theofilatos, Konstantinos/AAL-9162-2021; Ferreira, Maria/G-6561-2012; cartiglia, nicolo/ABF-1008-2021; Alves, Gilvan/C-4007-2013; Malagalage, Kithsiri/F-7629-2018; Cardini, Andrea/KUF-0984-2024; ABDULLAH, WAN/B-5439-2010; Sola, Valentina/E-7726-2015; kasem, Ashraf/GMX-4925-2022; Zhang, Li/GWM-7501-2022; Selvaggi, Michele/CAJ-2129-2022; Bedoya, Cristina/K-8066-2014; D'Hondt, Jorgen/ABD-7930-2020; Calvo Alamillo, Enrique/L-1203-2014; Kumar, Dinesh/ITU-5674-2023; candelise, vieri/H-2195-2015; Jo, Hyon-Suk/HGC-7070-2022; Ye, Sheng/HGA-5474-2022; Legger, Federica/HNC-2568-2023; Bornheim, Adi/L-2750-2019; Choudhury, Seema/LEM-7962-2024; Amendola, Chiara/KCK-3814-2024; Dozen, Candan/IQS-4597-2023; Luukka, Panja-Riina/S-8956-2018; Duarte-Campderrós, Jordi/F-5025-2018; Kapoor, Aakanksha Rajiv/KAM-5986-2024; Majumder, Gobinda/MTB-7852-2025; Lista, Luca/M-2912-2019; Paulini, Manfred/N-7794-2014; 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57212676903; 57215670509; 36639963700; 56501874000; 36123824900; 57217021019; 16403346300; 57193206437; 56648200300; 57216948352 | PHYSICAL REVIEW D | PHYS REV D | 2470-0010 | 2470-0029 | 105 | 11 | SCIE | ASTRONOMY & ASTROPHYSICS;PHYSICS, PARTICLES & FIELDS | 2022 | 5 | 21.0 | 4.47 | 2025-06-25 | 30 | 49 | PROTON-PROTON COLLISIONS; NEUTRINO MASS; SCALAR LEPTOQUARKS; UNDERLYING-EVENT; PAIR PRODUCTION; LEPTON; SEARCH; FERMION; NUMBER; QUARKS | English | 2022 | 2022-06-14 | 10.1103/physrevd.105.112007 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |||||
| ○ | ○ | Article | Masses and decay widths of Ξc/b and Ξ′c/b baryons | In this article, we present a complete classification of the negative parity Xi'(c/b) and Xi(c/b) P-wave states: seven belonging to the SU(3) flavor sextet and seven to the flavor antitriplet, the calculation of the Xi'(c/b) and Xi(c/b) strong partial decay widths into (2)Sigma(c)(K) over bar, (2)Xi'(c)pi, (4)Sigma(c)(K) over bar, (4)Xi'(c)pi, Lambda'(c)(K) over bar, Xi(c)pi, and Xi(c)eta channels both within the elementary emission model and the P-3(0) model, and the calculation of the electromagnetic decay widths for Xi'(c/b) and Xi(c/b) radiative decays. By means of the equal-spacing mass rule and by the analysis of the strong partial decay widths, we suggest possible assignments for the new LHCb Xi(c)(2923)(0), Xi(c)(2939)(0), and Xi(c)(2965)(0) states, as well as for the Xi(c)'s previously reported by Belle and BABAR. Our results can be tested by future experiments, at LHCb and Belle, disentangling the remaining missing piece of information, i.e., the quantum numbers. Finally, a comparison is made between a three-quark and a quark-diquark description of Xi(c) states. Very recently the LHCb Collaboration reported the observation of two new Xi(b) states, namely Xi(b)(6327)(0) and Xi(b)(6333)(0), in the Lambda K-0(b)-pi(+) channel with a statistical significance larger than 9 standard deviations. The experimental masses and widths of these two states are consistent with our mass and width predictions for the doublet of D-wave excitations of the Xi(b) system with J(Xi b)(P)(6327)(0) = 3/2(+) and J(Xi b(6333)0)(P) = 5/2(+). | Bijker, R.; Garcia-Tecocoatzi, H.; Giachino, A.; Ortiz-Pacheco, E.; Santopinto, E. | Univ Nacl Autonoma Mexico, Inst Ciencias Nucl, Ciudad De Mexico 04510, Mexico; Kyungpook Natl Univ, Ctr High Energy Phys, 80 Daehak Ro, Daegu 41566, South Korea; Ist Nazl Fis Nucl, Sez Genova, Via Dodecaneso 33, I-16146 Genoa, Italy; Polish Acad Sci, Inst Nucl Phys, Radzikowskiego 152, PL-31342 Krakow, Poland | Giachino, Alessandro/AAY-4443-2021; Garcia Tecocoatzi, Hugo/ABD-9615-2021; Santopinto, Elena/AGO-8650-2022; Ortiz'Pacheco, Emmanuel/NHQ-6284-2025; Bijker, Roelof/O-5483-2018 | 7003802851; 56548959500; 57195319240; 57203768409; 6601965257 | elena.santopinto@ge.infn.it; | PHYSICAL REVIEW D | PHYS REV D | 2470-0010 | 2470-0029 | 105 | 7 | SCIE | ASTRONOMY & ASTROPHYSICS;PHYSICS, PARTICLES & FIELDS | 2022 | 5 | 21.0 | 1.83 | 2025-06-25 | 20 | 21 | SINGLE PION-PHOTOPRODUCTION; QUARK-MODEL; UPDATED MEASUREMENT; ALGEBRAIC MODELS; HADRON STRUCTURE; HEAVY BARYONS; RESONANCES | English | 2022 | 2022-04-26 | 10.1103/physrevd.105.074029 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||||
| ○ | ○ | Article | Measurement of B(Bs → DsX) with Bs semileptonic tagging | We report the first direct measurement of the inclusive branching fraction B(B-s -> DsX) via B-s tagging in e(+)e(-) -> gamma(5S) events. Tagging is accomplished through a partial reconstruction of semileptonic decays B-s -> D(s)Xl nu, where X denotes unreconstructed additional hadrons or photons and l is an electron or muon. With 121.4 fb(-1) of data collected at the gamma(5S) resonance by the Belle detector at the KEKB asymmetric-energy e(+)e(-) collider, we obtain B(B-s -> DsX) = (60.2 +/- 5.8 +/- 2.3)%, where the first uncertainty is statistical and the second is systematic. | Wang, B.; Kinoshita, K.; Aihara, H.; Asner, D. M.; Aushev, T.; Ayad, R.; Babu, V; Badhrees, I; Bakich, A. M.; Behera, P.; Beleno, C.; Bennett, J.; Bessner, M.; Bhardwaj, V; Bilka, T.; Biswal, J.; Bobrov, A.; Bonvicini, G.; Bozek, A.; Bracko, M.; Browder, T. E.; Campajola, M.; Cao, L.; Chen, A.; Chilikin, K.; Cho, H. E.; Cho, K.; Choi, S-K; Choi, Y.; Cinabro, D.; Cunliffe, S.; Dash, N.; Di Capua, F.; Di Carlo, S.; Dolezal, Z.; Eidelman, S.; Epifanov, D.; Fast, J. E.; Ferber, T.; Fulsom, B. G.; Garg, R.; Gaur, V; Garmash, A.; Giri, A.; Goldenzweig, P.; Guan, Y.; Hayasaka, K.; Hayashii, H.; Hou, W-S; Inami, K.; Ishikawa, A.; Iwasaki, M.; Iwasaki, Y.; Jia, S.; Jin, Y.; Joffe, D.; Joo, K. K.; Kaliyar, A. B.; Kang, K. H.; Karyan, G.; Kiesling, C.; Kim, D. Y.; Kim, K. T.; Kim, S. H.; Kodys, P.; Korpar, S.; Kotchetkov, D.; Krizan, P.; Kroeger, R.; Krokovny, P.; Kuhr, T.; Kuzmin, A.; Kwon, Y-J; Lange, J. S.; Lee, I. S.; Lee, J. Y.; Lee, S. C.; Li, L. K.; Li, Y. B.; Li Gioi, L.; Libby, J.; Lieret, K.; Liventsev, D.; Luo, T.; MacNaughton, J.; MacQueen, C.; Masuda, M.; Matsuda, T.; Matvienko, D.; Merola, M.; Miyabayashi, K.; Mizuk, R.; Mohanty, G. B.; Mussa, R.; Nakao, M.; Nath, K. J.; Nayak, M.; Nisar, N. K.; Nishida, S.; Nishimura, K.; Ogawa, S.; Ono, H.; Onuki, Y.; Pakhlova, G.; Pal, B.; Pang, T.; Pardi, S.; Park, H.; Park, S-H; Pedlar, T. K.; Pestotnik, R.; Piilonen, L. E.; Popov, V; Prencipe, E.; Prim, M.; Ritter, M.; Rostomyan, A.; Russo, G.; Sandilya, S.; Santelj, L.; Sanuki, T.; Savinov, V; Schneider, O.; Schnell, G.; Schwanda, C.; Schwartz, A. J.; Seino, Y.; Senyo, K.; Sevior, M. E.; Shebalin, V; Shiu, J-G; Sokolov, A.; Solovieva, E.; Strube, J. F.; Sumiyoshi, T.; Takizawa, M.; Tanida, K.; Tenchini, F.; Uglov, T.; Uno, S.; Usov, Y.; Van Tonder, R.; Varner, G.; Vinokurova, A.; Waheed, E.; Wang, C. H.; Wang, M-Z; Wang, P.; Werbycka, O.; Won, E.; Yang, S. B.; Ye, H.; Yusa, Y.; Zhang, Z. P.; Zhilich, V; Zhukova, V; Zhulanov, V | Univ Basque Country UPV EHU, Bilbao 48080, Spain; Beihang Univ, Beijing 100191, Peoples R China; Brookhaven Natl Lab, Upton, NY 11973 USA; Budker Inst Nucl Phys SB RAS, Novosibirsk 630090, Russia; Charles Univ Prague, Fac Math & Phys, Prague 12116, Czech Republic; Chonnam Natl Univ, Kwangju 660701, South Korea; Univ Cincinnati, Cincinnati, OH 45221 USA; DESY, D-22607 Hamburg, Germany; 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; Justus Liebig Univ Giessen, D-35392 Giessen, Germany; Georg August Univ Gottingen, Phys Inst 2, D-37073 Gottingen, Germany; SOKENDAI Grad Univ Adv Studies, Hayama, Kanagawa 2400193, Japan; Gyeongsang Natl Univ, Chinju 660701, South Korea; Hanyang Univ, Seoul 133791, South Korea; Univ Hawaii, Honolulu, HI 96822 USA; High Energy Accelerator Res Org KEK, Tsukuba, Ibaraki 3050801, Japan; High Energy Accelerator Res Org KEK, KEK Theory Ctr, J PARC Branch, Tsukuba, Ibaraki 3050801, Japan; 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; 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 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; Kennesaw State Univ, Kennesaw, GA 30144 USA; King Abdulaziz City Sci & Technol, Riyadh 11442, Saudi Arabia; Korea Inst Sci & Technol Informat, Daejeon 305806, South Korea; Korea Univ, Seoul 136713, South Korea; Kyungpook Natl Univ, Daegu 702701, South Korea; Univ Paris Saclay, LAL, CNRS IN2P3, Univ Paris Sud, Orsay, France; Ecole Polytech Fed Lausanne EPFL, CH-1015 Lausanne, Switzerland; 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; Univ Maribor, 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 Inst Phys & Technol, Moscow 141700, Moscow Region, Russia; Nagoya Univ, Grad Sch Sci, Nagoya, Aichi 4648602, Japan; Univ Napoli Federico II, I-80055 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; RIKEN, Theoret Res Div, Nishina Ctr, Wako, Saitama 3510198, Japan; Univ Sci & Technol China, Hefei 230026, Peoples R China; Seoul Natl Univ, Seoul 151742, South Korea; Showa Pharmaceut Univ, Tokyo 1948543, Japan; Soongsil Univ, Seoul 156743, South Korea; Sungkyunkwan Univ, Suwon 440746, South Korea; Univ Sydney, Sch Phys, Sydney, NSW 2006, Australia; Univ Tabuk, Fac Sci, Dept Phys, Tabuk 71451, Saudi Arabia; Tata Inst Fundamental Res, Mumbai 400005, Maharashtra, India; 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 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 120749, South Korea | Sumiyoshi, Takayuki/Q-5536-2017; Dash, Nibedita/ABA-4232-2021; Waheed, Eiasha/AAG-6743-2021; Li, Jiarong/ABG-6750-2022; Pestotnik, Rok/A-3626-2008; Mizuk, Roman/B-3751-2014; Chilikin, Kirill/B-4402-2014; Doležal, Zdeněk/K-6861-2017; Shimizu, Noritaka/AHE-7477-2022; lu, Li/KBA-2603-2024; Egorychev, Victor/H-1076-2014; Schneider, Olivier/R-9566-2018; Uglov, Timofey/B-2406-2014; Pang, Peter Tsun Ho/JCD-5182-2023; Popov, Vitaliy/C-9925-2016; Werbycka, Olga/HTQ-3921-2023; Pakhlova, Galina/C-5378-2014; Bilka, Tadeáš/Q-3680-2017; , Luo/AAP-8401-2020; Zhukova, Valentina/C-8878-2016; Campajola, Marcello/V-1689-2019; Bhardwaj, Vishal/JXN-3575-2024; zhang, xu/JXX-7692-2024; Li, Longke/MSZ-3796-2025; Liventsev, Dmitri/MYR-0735-2025; Niiyama, Masayuki/HPE-8084-2023; Iwasaki, Masako/AAG-6574-2019; Ishikawa, Akimasa/G-6916-2012; Gaur, Vipin/HZM-4280-2023; Aihara, Hiroaki/F-3854-2010; Sandilya, Saurabh/AAR-2477-2021; sun, jian/H-2376-2015; Babu, V/L-1728-2013; Won, Eunil/S-7182-2019; Aushev, Tagir/AAN-9735-2020; Kim, Ji Hoon/AAB-4602-2022; Strube, Jan/E-9310-2015; Strube, Jan/T-6675-2019; Wang, Shaohui/HKO-6774-2023; Zhukov, Konstantin/M-6027-2015; Solovieva, Elena/B-2449-2014; Kodys, Peter/P-2636-2017; Nellikunnummel, Nisar/AAY-7200-2021; Chen, Ang/HII-3354-2022; Tenchini, Francesco/JTT-8673-2023; Park, Hyungkyu/JVZ-0024-2024 | 57758561300; 35227494800; 26431253400; 35226924300; 35226925000; 36473131000; 56673779100; 36624969500; 56431278900; 57943353600; 57195150458; 35313360100; 57208362193; 22233547600; 56624583600; 57055915400; 25926337000; 57206506584; 57225386308; 35271332600; 35226974400; 57201115046; 57204568429; 55913471500; 35227071900; 57225375986; 57207576178; 57207798241; 35227095000; 59110376400; 57215682164; 55368264400; 56985709800; 57208830718; 57190000762; 57214699347; 57220210877; 35227130100; 35314636500; 15126870300; 35227244500; 57219588212; 37074665000; 35227285100; 7102961266; 35233679700; 57603854500; 35227356500; 35227353100; 35227366200; 56522611500; 35227389900; 35227405400; 56522275200; 57194692653; 59299091500; 56431350200; 35227379900; 57193274163; 57224903543; 35221743200; 8062452400; 35225891500; 50361579400; 7601588326; 14826956800; 57080476200; 57222996371; 10639485800; 35227502900; 57208069443; 35227570700; 57205335932; 56419217900; 56812501100; 55816685400; 55870761600; 57257924100; 57202345327; 58754147400; 26867892800; 55820982400; 57211034012; 56812540000; 36777886700; 56243243000; 57205390925; 56779517600; 59587666000; 18536939900; 36876647700; 56235238900; 35227750200; 35227732200; 55406048600; 57203524033; 57211144406; 55631815900; 55632289100; 57219627811; 26632346500; 35227762800; 7401965457; 35227766800; 35234620700; 55437294100; 57211082131; 6602539790; 35086680500; 57207467557; 35227847800; 35227892100; 57205388346; 58918272500; 35227850000; 36099403700; 22968787800; 8721811800; 7202429853; 56985930800; 35590850800; 8059063000; 56482852900; 57203237985; 8721812700; 35228014600; 57775849100; 56985327200; 57214214242; 35227980100; 57222997386; 55628572552; 57212378611; 25958374200; 35227948400; 35228087500; 55554740400; 35942976800; 8388152800; 37103051300; 35228072600; 35228086800; 35228154000; 57204557858; 57222996364; 35273620100; 57193702443; 59091623000; 35228078700; 57202261521; 57224183690; 35274124300; 57204951807; 55286044100; 55145482100; 58754347000; 35228211600; 57990888000; 35273950000 | PHYSICAL REVIEW D | PHYS REV D | 2470-0010 | 2470-0029 | 105 | 1 | SCIE | ASTRONOMY & ASTROPHYSICS;PHYSICS, PARTICLES & FIELDS | 2022 | 5 | 21.0 | 0.09 | 2025-06-25 | 0 | 2 | MESON PRODUCTION | English | 2022 | 2022-01-11 | 10.1103/physrevd.105.012004 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |||||
| ○ | ○ | Article | Measurement of cosmogenic ⁹Li and ⁸He production rates at RENO | We report the measured production rates of unstable isotopes Li-9 and He-8 produced by cosmic muon spallation on C-12 using two identical detectors of the RENO experiment. Their beta decays accompanied by a neutron make a significant contribution to backgrounds of reactor antineutrino events in precise determination of the smallest neutrino mixing angle. The mean muon energy of its near (far) detector with an overburden of 120 (450) m.w.e. is estimated as 33.1 +/- 2.3(73.6 +/- 4.4) GeV. Based on roughly 3100 days of data, the cosmogenic production rate of Li-9(He-8) isotope is measured to be 44.2 +/- 3.1(10.6 +/- 7.4) per day at near detector and 10.0 +/- 1.1(2.1 +/- 1.5) per day at far detector. This corresponds to yields of Li-9(He-8), 4.80 +/- 0.36(1.15 +/- 0.81) and 9.9 +/- 1.1(2.1 +/- 1.5) at near and far detectors, respectively, in a unit of 10(-8)mu(-1) g(-1) cm(2). Combining the measured Li-9 yields with other available underground measurements, an excellent power-law relationship of the yield with respect to the mean muon energy is found to have an exponent of alpha = 0.75 +/- 0.05. | Lee, H. G.; Choi, J. H.; Jang, H., I; Jang, J. S.; Jeon, S. H.; Joo, K. K.; Jung, D. E.; Kim, J. G.; Kim, J. H.; Kim, J. Y.; Kim, S. B.; Kim, S. Y.; Kim, W.; Kwon, E.; Lee, D. H.; Lee, W. J.; Lim, I. T.; Moon, D. H.; Pac, M. Y.; Park, J. S.; Park, R. G.; Seo, H.; Seo, J. W.; Shin, C. D.; Yang, B. S.; Yoo, J.; Yoon, S. G.; Yeo, I. S.; Yu, I | Sungkyunkwan Univ, Dept Phys, Suwon 16419, South Korea; Dongshin Univ, Inst High Energy Phys, Naju 58245, South Korea; Seoyeong Univ, Dept Fire Safety, Gwangju 61268, South Korea; Gwangju Inst Sci & Technol, GIST Coll, Gwangju 61005, South Korea; Chonnam Natl Univ, Inst Universe & Elementary Particles, Gwangju 61186, South Korea; Seoul Natl Univ, Dept Phys & Astron, Seoul 08826, South Korea; Kyungpook Natl Univ, Dept Phys, Daegu 41566, South Korea | ; Kim, Soo-Bong/B-7061-2014; Kim, Ji.hwan/AAN-9424-2021; LEE, DAE-HEE/O-5243-2018; Yag, Byeongsu/JFK-5584-2023; Seo, Seon/K-9250-2014 | 59626331200; 57221920572; 7202135207; 35227380700; 57210510105; 35227379900; 57204678963; 57203889633; 55793484100; 59088308600; 34769914200; 57206877680; 35227558900; 59645032400; 55601988200; 59040860400; 17137272700; 35278628000; 35227742400; 57077274100; 57007692600; 55702344100; 57209319687; 56191820400; 24544935800; 57203196923; 35224374900; 56647733700; 35228244700 | PHYSICAL REVIEW D | PHYS REV D | 2470-0010 | 2470-0029 | 106 | 1 | SCIE | ASTRONOMY & ASTROPHYSICS;PHYSICS, PARTICLES & FIELDS | 2022 | 5 | 21.0 | 0.27 | 2025-06-25 | 2 | 3 | ENERGY-LEVELS; LIGHT-NUCLEI | English | 2022 | 2022-07-01 | 10.1103/physrevd.106.012005 | 바로가기 | 바로가기 | 바로가기 | 바로가기 |
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