In-orbit background simulation of a type-B CATCH satellite
Abstract
The Chasing All Transients Constellation Hunters (CATCH) space mission plans to launch three types of micro-satellites (A, B, and C). The type-B CATCH satellites are dedicated to locating transients and detecting their time-dependent energy spectra. A type-B satellite is equipped with lightweight Wolter-I X-ray optics and an array of position-sensitive multi-pixel Silicon Drift Detectors. To optimize the scientific payloads for operating properly in orbit and performing the observations with high sensitivities, this work performs an in-orbit background simulation of a type-B CATCH satellite using the Geant4 toolkit. It shows that the persistent background is dominated by the cosmic X-ray diffuse background and the cosmic-ray protons. The dynamic background is also estimated considering trapped charged particles in the radiation belts and low-energy charged particles near the geomagnetic equator, which is dominated by the incident electrons outside the aperture. The simulated persistent background within the focal spot is used to estimate the observation sensitivity, i.e. 4.2210 erg cm s with an exposure of 10 s and a Crab-like source spectrum, which can be utilized further to optimize the shielding design. The simulated in-orbit background also suggests that the magnetic diverter just underneath the optics may be unnecessary in this kind of micro-satellites, because the dynamic background induced by charged particles outside the aperture is around 3 orders of magnitude larger than that inside the aperture.
Keywords
Cite
@article{arxiv.2305.08589,
title = {In-orbit background simulation of a type-B CATCH satellite},
author = {Jingyu Xiao and Liqiang Qi and Shuang-Nan Zhang and Lian Tao and Zhengwei Li and Juan Zhang and Xiangyang Wen and Qian-Qing Yin and Yanji Yang and Qingcui Bu and Sheng Yang and Xiaojing Liu and Yiming Huang and Wen Chen and Yong Yang and Huaqiu Liu and Yibo Xu and Shujie Zhao and Xuan Zhang and Panping Li and Kang Zhao and Ruican Ma and Qingchang Zhao and Ruijing Tang and Jinhui Rao and Yajun Li},
journal= {arXiv preprint arXiv:2305.08589},
year = {2023}
}
Comments
24 pages, 13 figures, 7 tables, accepted for publication in Experimental Astronomy