A Localization Method of High Energy Transients for All-sky Gamma-ray Monitor

Author:

Zhao Yi,Xue Wangchen,Xiong Shaolin,Luo QiORCID,Wang Yuanhao,Liu Jiacong,Yu HengORCID,Zhao Xiaoyun,Huang YueORCID,Liao JinyuanORCID,Sun JianchaoORCID,Li Xiaobo,Yi Qibin,Cai Ce,Xiao Shuo,Xie Shenglun,Zheng Chao,Zhang Yanqiu,Wang Chenwei,Tan Wenjun,Guo Zhiwei,Li Chaoyang,An Zhenghua,Chen Gang,Du Yanqi,Gao Min,Gong Ke,Guo Dongya,He Jiang,He Jianjian,Li Bing,Li Gang,Li Xinqiao,Liang Jing,Liang Xiaohua,Liu Yaqing,Ma Xiang,Qiao RuiORCID,Song LimingORCID,Song Xinying,Sun Xilei,Wang Jin,Wang Ping,Wen Xiangyang,Wu Hong,Xu Yanbing,Yang Sheng,Zhang Dali,Zhang Fan,Zhang Hongmei,Zhang Peng,Zhang Shu,Zhang Zhen,Zheng Shijie,Zhang Keke,Han Xingbo,Wu Haiyan,Tai Hu,Geng Hao,Lu Gaopeng,Xu Wei,Lyu Fanchao,Zhang Hongbo,Lu Fangjun,Zhang Shuangnan

Abstract

Abstract Fast and reliable localization of high-energy transients is crucial for characterizing the burst properties and guiding the follow-up observations. Localization based on the relative counts of different detectors has been widely used for all-sky gamma-ray monitors. There are two major methods for this count distribution localization: χ 2 minimization method and the Bayesian method. Here we propose a modified Bayesian method that could take advantage of both the accuracy of the Bayesian method and the simplicity of the χ 2 method. With comprehensive simulations, we find that our Bayesian method with Poisson likelihood is generally more applicable for various bursts than the χ 2 method, especially for weak bursts. We further proposed a location-spectrum iteration approach based on the Bayesian inference, which could alleviate the problems caused by the spectral difference between the burst and location templates. Our method is very suitable for scenarios with limited computation resources or time-sensitive applications, such as in-flight localization software, and low-latency localization for rapidly follow-up observations.

Publisher

IOP Publishing

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. The Design of GECAM Scientific Ground Segment;Research in Astronomy and Astrophysics;2024-09-04

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