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Detecting neutrinos from supernova bursts in PandaX-4T

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【作者】 庞彬宇阿布都沙拉木·阿布都克力木薄子豪陈葳谌勋程晨成兆侃崔祥仪樊英杰方德清符长波付孟婷耿立升Karl Giboni顾琳慧郭绪元韩晨成韩柯何昶达何金荣黄迪黄彦霖黄俊挺黄周侯汝全侯钰季向东巨永林李晨翔李家富李名川李帅杰李涛林箐刘江来陆聪聪芦晓盈罗棱尹罗云阳马文博马余刚冒亚军孟月宁旭阳祁宁春钱志成任祥祥Nasir Shaheed尚晓凤邵熙元申国防司琳孙文良谈安迪陶奕王安庆王萌王秋红王少博王思广王为王秀丽王舟魏月环武蒙蒙邬维浩夏经铠肖梦姣肖翔谢鹏伟燕斌斌颜玺雨杨继军杨勇姚玉坤喻纯旭袁影苑哲曾鑫宁张丹张敏桢张鹏张世博张澍张涛张洋张瀛心张园园赵力郑其斌周济芳周宁周小朋周永周钰博

【Author】 Binyu Pang;Abdusalam Abdukerim;Zihao Bo;Wei Chen;Xun Chen;Chen Cheng;Zhaokan Cheng;Xiangyi Cui;Yingjie Fan;Deqing Fang;Changbo Fu;Mengting Fu;Lisheng Geng;Karl Giboni;Linhui Gu;Xuyuan Guo;Chencheng Han;Ke Han;Changda He;Jinrong He;Di Huang;Yanlin Huang;Junting Huang;Zhou Huang;Ruquan Hou;Yu Hou;Xiangdong Ji;Yonglin Ju;Chenxiang Li;Jiafu Li;Mingchuan Li;Shuaijie Li;Tao Li;Qing Lin;QiJianglaing Liu;Congcong Lu;Xiaoying Lu;Lingyin Luo;Yunyang Luo;Wenbo Ma;Yugang Ma;Yajun Mao;Yue Meng;Xuyang Ning;Ningchun Qi;Zhicheng Qian;Xiangxiang Ren;Nasir Shaheed;Xiaofeng Shang;Xiyuan Shao;Guofang Shen;Lin Si;Wenliang Sun;Andi Tan;Yi Tao;Anqing Wang;Meng Wang;Qiuhong Wang;Shaobo Wang;Siguang Wang;Wei Wang;Xiuli Wang;Zhou Wang;Yuehuan Wei;Mengmeng Wu;Weihao Wu;Jingkai Xia;Mengjiao Xiao;Xiang Xiao;Pengwei Xie;Binbin Yan;Xiyu Yan;Jijun Yang;Yong Yang;Yukun Yao;Chunxu Yu;Ying Yuan;Zhe Yuan;Xinning Zeng;Dan Zhang;Minzhen Zhang;Peng Zhang;Shibo Zhang;Shu Zhang;Tao Zhang;Yang Zhang;Yingxin Zhang;Yuanyuan Zhang;Li Zhao;Qibin Zheng;Jifang Zhou;Ning Zhou;Xiaopeng Zhou;Yong Zhou;Yubo Zhou;Research Center for Particle Science and Technology,Institute of Frontier and Interdisciplinary Science,Shandong University;Key Laboratory of Particle Physics and Particle Irradiation of Ministry of Education,Shandong University;School of Physics and Astronomy,Shanghai Jiao Tong University,Key Laboratory for Particle Astrophysics and Cosmology (MoE),Shanghai Key Laboratory for Particle Physics and Cosmology;Shanghai Jiao Tong University Sichuan Research Institute;School of Physics,Sun Yat-Sen University;Sino-French Institute of Nuclear Engineering and Technology,Sun Yat-Sen University;New Cornerstone Science Laboratory,Tsung-Dao Lee Institute,Shanghai Jiao Tong University;Key Laboratory of Nuclear Physics and Ion-beam Application (MOE),Institute of Modern Physics,Fudan University;School of Physics,Peking University;School of Physics,Beihang University;International Research Center for Nuclei and Particles in the Cosmos & Beijing Key Laboratory of Advanced Nuclear Materials and Physics,Beihang University;School of Physics and Microelectronics,Zhengzhou University;Yalong River Hydropower Development Company,Ltd.;School of Medical Instrument and Food Engineering,University of Shanghai for Science and Technology;School of Mechanical Engineering,Shanghai Jiao Tong University;Department of Physics,University of Maryland,College Park;Department of Physics,Yantai University;State Key Laboratory of Particle Detection and Electronics,University of Science and Technology of China;Department of Modern Physics,University of Science and Technology of China;School of Physics,Nankai University;SJTU Paris Elite Institute of Technology,Shanghai Jiao Tong University;School of Physics and Astronomy,Sun Yat-Sen University;

【通讯作者】 张洋;

【机构】 Research Center for Particle Science and Technology,Institute of Frontier and Interdisciplinary Science,Shandong UniversityKey Laboratory of Particle Physics and Particle Irradiation of Ministry of Education,Shandong UniversitySchool of Physics and Astronomy,Shanghai Jiao Tong University,Key Laboratory for Particle Astrophysics and Cosmology (MoE),Shanghai Key Laboratory for Particle Physics and CosmologyShanghai Jiao Tong University Sichuan Research InstituteSchool of Physics,Sun Yat-Sen UniversitySino-French Institute of Nuclear Engineering and Technology,Sun Yat-Sen UniversityNew Cornerstone Science Laboratory,Tsung-Dao Lee Institute,Shanghai Jiao Tong UniversityKey Laboratory of Nuclear Physics and Ion-beam Application (MOE),Institute of Modern Physics,Fudan UniversitySchool of Physics,Peking UniversitySchool of Physics,Beihang UniversityInternational Research Center for Nuclei and Particles in the Cosmos & Beijing Key Laboratory of Advanced Nuclear Materials and Physics,Beihang UniversitySchool of Physics and Microelectronics,Zhengzhou UniversityYalong River Hydropower Development Company,Ltd.School of Medical Instrument and Food Engineering,University of Shanghai for Science and TechnologySchool of Mechanical Engineering,Shanghai Jiao Tong UniversityDepartment of Physics,University of Maryland,College ParkDepartment of Physics,Yantai UniversityState Key Laboratory of Particle Detection and Electronics,University of Science and Technology of ChinaDepartment of Modern Physics,University of Science and Technology of ChinaSchool of Physics,Nankai UniversitySJTU Paris Elite Institute of Technology,Shanghai Jiao Tong UniversitySchool of Physics and Astronomy,Sun Yat-Sen University

【摘要】 Neutrinos from core-collapse supernovae are essential for understanding neutrino physics and stellar evolution. Dual-phase xenon dark matter detectors can be used to track explosions of galactic supernovae by detecting neutrinos through coherent elastic neutrino-nucleus scatterings. In this study, a variation of progenitor masses and explosion models are assumed to predict neutrino fluxes and spectra, which result in the number of expected neutrino events ranging from 6.6 to 13.7 at a distance of 10 kpc over a 10-s duration with negligible backgrounds at PandaX-4T. Two specialized triggering alarms for monitoring supernova burst neutrinos are built. The efficiency of detecting supernova explosions at various distances in the Milky Way is estimated. These alarms will be implemented in the real-time supernova monitoring system at PandaX-4T in the near future, which will provide supernova early warnings for the astronomical community.

【Abstract】 Neutrinos from core-collapse supernovae are essential for understanding neutrino physics and stellar evolution. Dual-phase xenon dark matter detectors can be used to track explosions of galactic supernovae by detecting neutrinos through coherent elastic neutrino-nucleus scatterings. In this study, a variation of progenitor masses and explosion models are assumed to predict neutrino fluxes and spectra, which result in the number of expected neutrino events ranging from 6.6 to 13.7 at a distance of 10 kpc over a 10-s duration with negligible backgrounds at PandaX-4T. Two specialized triggering alarms for monitoring supernova burst neutrinos are built. The efficiency of detecting supernova explosions at various distances in the Milky Way is estimated. These alarms will be implemented in the real-time supernova monitoring system at PandaX-4T in the near future, which will provide supernova early warnings for the astronomical community.

【基金】 This project is Supported in part by the National Natural Science Foundation of China (12090060, 12090063, 12105052, 12005131, 11905128, 11925502);the Office of Science and Technology,Shanghai Municipal Government,China (22JC1410100)
  • 【文献出处】 Chinese Physics C ,中国物理C , 编辑部邮箱 ,2024年07期
  • 【分类号】P145.3
  • 【下载频次】1
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