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Prospects for the detection rate of very-high-energy γ-ray emissions from short γ-ray bursts with the HADAR experiment

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【作者】 陈琪凌胡珮瑾苏菁菁康明铭郭义庆陈天禄单增罗布范雨凡冯有亮高启苟全补胡红波厉海金刘成刘茂元刘伟钱详利乔冰强孙慧英王旭王振辛广广姚玉华袁强张毅赵兵

【Author】 Qi-Ling Chen;Pei-Jin Hu;Jing-Jing Su;Ming-Ming Kang;Yi-Qing Guo;Tian-Lu Chen;Dan-Zeng Luo-Bu;Yu-fan Fan;You-Liang Feng;Qi Gao;Quan-Bu Gou;Hong-Bo Hu;Hai-Jin Li;Cheng Liu;Mao-Yuan Liu;Wei Liu;Xiang-Li Qian;Bing-Qiang Qiao;Hui-Ying Sun;Xu Wang;Zhen Wang;Guang-Guang Xin;Yu-Hua Yao;Qiang Yuan;Yi Zhang;Bing Zhao;College of Physics,Sichuan University;Key Laboratory of Particle Astrophysics,Institute of High Energy Physics,Chinese Academy of Sciences;University of Chinese Academy of Sciences;The Key Laboratory of Cosmic Rays (Tibet University),Ministry of Education;School of Intelligent Engineering,Shandong Management University;Tsung-Dao Lee Institute,Shanghai Jiao Tong University;School of Physics and Technology,Wuhan University;College of Physics,Chongqing University;Key Laboratory of Dark Matter and Space Astronomy,Purple Mountain Observatory,Chinese Academy of Sciences;

【机构】 College of Physics,Sichuan UniversityKey Laboratory of Particle Astrophysics,Institute of High Energy Physics,Chinese Academy of SciencesUniversity of Chinese Academy of SciencesThe Key Laboratory of Cosmic Rays (Tibet University),Ministry of EducationSchool of Intelligent Engineering,Shandong Management UniversityTsung-Dao Lee Institute,Shanghai Jiao Tong UniversitySchool of Physics and Technology,Wuhan UniversityCollege of Physics,Chongqing UniversityKey Laboratory of Dark Matter and Space Astronomy,Purple Mountain Observatory,Chinese Academy of Sciences

【摘要】 The observation of short gamma ray bursts(SGRBs) in the TeV energy range plays an important role in understanding the radiation mechanism and probing potential new physics,such as Lorentz invariance violation(LIV).However,no SGRBs have been observed in this energy range owing to the short duration of SGRBs and the weakness of current experiments.New experiments with new technology are required to detect the very high energy(VHE) emission of SGRBs.In this study,we simulate the VHE γ-ray emissions from SGRB s and calculate the annual detection rate with the High Altitude Detection of Astronomical Radiation(HADAR) experiment.First,a set of pseudo-SGRB samples is generated and checked using the observations of the Fermi-GBM,Fermi-LAT,and SwiftBAT measurements.The annual detection rate is calculated from these SGRB samples based on the performance of the HADAR instrument.As a result,the HADAR experiment can detect 0.5 SGRBs per year if the spectral break-off of γ-rays caused by the internal absorption and Klein-Nishina(KN) effect is larger than 100 GeV.For a GRB090510-like GRB in HADAR’s view,it should be possible to detect approximately 2000 photons considering the internal absorption and KN effect.With a time delay assumption due to LIV effects,a simulated light curve of GRB090510 has evident energy dependence.We hope that the HADAR experiment can perform SGRB observations and test our calculations in the future.

【Abstract】 The observation of short gamma ray bursts(SGRBs) in the TeV energy range plays an important role in understanding the radiation mechanism and probing potential new physics,such as Lorentz invariance violation(LIV).However,no SGRBs have been observed in this energy range owing to the short duration of SGRBs and the weakness of current experiments.New experiments with new technology are required to detect the very high energy(VHE) emission of SGRBs.In this study,we simulate the VHE γ-ray emissions from SGRB s and calculate the annual detection rate with the High Altitude Detection of Astronomical Radiation(HADAR) experiment.First,a set of pseudo-SGRB samples is generated and checked using the observations of the Fermi-GBM,Fermi-LAT,and SwiftBAT measurements.The annual detection rate is calculated from these SGRB samples based on the performance of the HADAR instrument.As a result,the HADAR experiment can detect 0.5 SGRBs per year if the spectral break-off of γ-rays caused by the internal absorption and Klein-Nishina(KN) effect is larger than 100 GeV.For a GRB090510-like GRB in HADAR’s view,it should be possible to detect approximately 2000 photons considering the internal absorption and KN effect.With a time delay assumption due to LIV effects,a simulated light curve of GRB090510 has evident energy dependence.We hope that the HADAR experiment can perform SGRB observations and test our calculations in the future.

【关键词】 HADARsimulationgamma ray burstcosmic ray
【Key words】 HADARsimulationgamma ray burstcosmic ray
【基金】 Supported by the National Natural Science Foundation of China (12263004, 12263005, 12275279)
  • 【文献出处】 Chinese Physics C ,中国物理C , 编辑部邮箱 ,2023年09期
  • 【分类号】P172.3
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