Calibration of the Timing Performance of GECAM-C

Author:

Xiao ShuoORCID,Liu Ya-Qing,Gong Ke,An Zheng-Hua,Xiong Shao-LinORCID,Li Xin-QiaoORCID,Wen Xiang-Yang,Peng Wen-Xi,Zhang Da-Li,Tuo You-LiORCID,Zheng Shi-Jie,Song Li-MingORCID,Wang PingORCID,Zhao Xiao-Yun,Huang Yue,Ma XiangORCID,Liu Xiao-Jing,Qiao Rui,Xu Yan-Bing,Yang Sheng,Zhang Fan,Wang Yue,Zhang Yan-Qiu,Xue Wang-Chen,Liu Jia-Cong,Zheng Chao,Wang Chen-Wei,Tan Wen-Jun,Cai CeORCID,Yi Qi-Bin,Zhang PengORCID,Luo Xi-Hong,Yang Jiao-Jiao,Zhi Qi-JunORCID,Dong Ai-JunORCID,Dang Shi-Jun,Shang Lun-Hua,Zhang Shuang-NanORCID

Abstract

Abstract As a new member of the Gravitational-wave high-energy Electromagnetic Counterpart All-sky Monitor (GECAM) after GECAM-A and GECAM-B, GECAM-C (originally called HEBS), which was launched on board the SATech-01 satellite on 2022 July 27, aims to monitor and localize X-ray and gamma-ray transients from ∼6 keV to 6 MeV. GECAM-C utilizes a similar design to GECAM but operates in a more complex orbital environment. In this work, we utilize the secondary particles simultaneously produced by the cosmic-ray events on orbit and recorded by multiple detectors to calibrate the relative timing accuracy between all detectors of GECAM-C. We find the result is 0.1 μs, which is the highest time resolution among all GRB detectors ever flown and very helpful in timing analyses such as minimum variable timescale and spectral lags, as well as in time delay localization. Besides this, we calibrate the absolute time accuracy using the one-year Crab Pulsar data observed by GECAM-C and Fermi’s Gamma-ray Burst Monitor, as well as GECAM-C and GECAM-B. The results are 2.02 ± 2.26 μs and 5.82 ± 3.59 μs, respectively. Finally, we investigate the spectral lag between the different energy bands of the Crab Pulsar observed by GECAM and the Gamma-ray Burst Monitor, which is ∼ −0.2 μs keV−1.

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

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