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GECAM Localization of High Energy Transients and the Systematic Error

Authors :
Zhao, Yi
Xue, Wang-Chen
Xiong, Shao-Lin
Wang, Yuan-Hao
Liu, Jia-Cong
Liuo, Qi
Zhang, Yan-Qiu
Sun, Jian-Chao
Zhao, Xiao-Yun
Cai, Ce
Xiao, Shuo
Huang, Yue
Li, Xiao-Bo
Zhang, Zhen
Liao, Jin-Yuan
Yang, Sheng
Qiao, Rui
Guo, Dong-Ya
Zheng, Chao
Yi, Qi-Bin
Xie, Sheng-Lun
Guo, Zhi-Wei
Li, Chao-Yang
Wang, Chen-Wei
Tan, Wen-Jun
Wang, Yue
Peng, Wen-Xi
Zheng, Shi-Jie
He, Jian-Jian
Wang, Ping
Wang, Jin
Ma, Xiang
Song, Xin-Ying
Zhang, Hong-Mei
Li, Bing
Zhang, Peng
Wu, Hong
Du, Yan-Qi
Liang, Jing
Zhao, Guo-Ying
Li, Xin-Qiao
Wen, Xiang-Yang
An, Zheng-Hua
Sun, Xi-Lei
Xu, Yan-Bing
Zhang, Fan
Zhang, Da-Li
Gong, Ke
Liu, Ya-Qing
Liang, Xiao-Hua
Liu, Xiao-Jing
Gao, Min
Wang, Jin-Zhou
Song, Li-Ming
Chen, Gang
Zhang, Ke-Ke
Han, Xing-Bo
Wu, Hai-Yan
Hu, Tai
Geng, Hao
Lu, Fang-Jun
Zhang, Shu
Zhang, Shuang-Nan
Lu, Gao-Peng
Zeng, Ming
Yu, Heng
Zhao, Yi
Xue, Wang-Chen
Xiong, Shao-Lin
Wang, Yuan-Hao
Liu, Jia-Cong
Liuo, Qi
Zhang, Yan-Qiu
Sun, Jian-Chao
Zhao, Xiao-Yun
Cai, Ce
Xiao, Shuo
Huang, Yue
Li, Xiao-Bo
Zhang, Zhen
Liao, Jin-Yuan
Yang, Sheng
Qiao, Rui
Guo, Dong-Ya
Zheng, Chao
Yi, Qi-Bin
Xie, Sheng-Lun
Guo, Zhi-Wei
Li, Chao-Yang
Wang, Chen-Wei
Tan, Wen-Jun
Wang, Yue
Peng, Wen-Xi
Zheng, Shi-Jie
He, Jian-Jian
Wang, Ping
Wang, Jin
Ma, Xiang
Song, Xin-Ying
Zhang, Hong-Mei
Li, Bing
Zhang, Peng
Wu, Hong
Du, Yan-Qi
Liang, Jing
Zhao, Guo-Ying
Li, Xin-Qiao
Wen, Xiang-Yang
An, Zheng-Hua
Sun, Xi-Lei
Xu, Yan-Bing
Zhang, Fan
Zhang, Da-Li
Gong, Ke
Liu, Ya-Qing
Liang, Xiao-Hua
Liu, Xiao-Jing
Gao, Min
Wang, Jin-Zhou
Song, Li-Ming
Chen, Gang
Zhang, Ke-Ke
Han, Xing-Bo
Wu, Hai-Yan
Hu, Tai
Geng, Hao
Lu, Fang-Jun
Zhang, Shu
Zhang, Shuang-Nan
Lu, Gao-Peng
Zeng, Ming
Yu, Heng
Publication Year :
2022

Abstract

Gravitational wave high-energy Electromagnetic Counterpart All-sky Monitor (GECAM) is a pair of microsatellites (i.e. GECAM-A and GECAM-B) dedicated to monitoring gamma-ray transients including gravitational waves high-energy electromagnetic counterparts, Gamma-ray Bursts, Soft Gamma-ray Repeaters, Solar Flares and Terrestrial Gamma-ray Flashes. Since launch in December 2020, GECAM-B has detected hundreds of astronomical and terrestrial events. For these bursts, localization is the key for burst identification and classification as well as follow-up observations in multi-wavelength. Here, we propose a Bayesian localization method with Poisson data with Gaussian background profile likelihood to localize GECAM bursts based on the burst counts distribution in detectors with different orientations. We demonstrate that this method can work well for all kinds of bursts, especially for extremely short ones. In addition, we propose a new method to estimate the systematic error of localization based on a confidence level test, which can overcome some problems of the existing method in literature. We validate this method by Monte Carlo simulations, and then apply it to a burst sample with accurate location and find that the mean value of the systematic error of GECAM-B localization is $\sim 2.5^{\circ}$. By considering this systematic error, we can obtain a reliable localization probability map for GECAM bursts. Our methods can be applied to other gamma-ray monitors.<br />Comment: The paper has been accepted by Astrophysical Journal Supplement Series

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1363573593
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.3847.1538-4365.acafeb