CATCH 空间飞行任务第一个探路者的模拟研究

IF 2.7 3区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS
Yiming Huang, Juan Zhang, Lian Tao, Zhengwei Li, Donghua Zhao, Qian-Qing Yin, Xiangyang Wen, Jingyu Xiao, Chen Zhang, Shuang-Nan Zhang, Shaolin Xiong, Qingcui Bu, Jirong Cang, Dezhi Cao, Wen Chen, Siran Ding, Min Gao, Yang Gao, Shujin Hou, Liping Jia, Ge Jin, Dalin Li, Jinsong Li, Panping Li, Yajun Li, Xiaojing Liu, Ruican Ma, Xingyu Pan, Liqiang Qi, Jinhui Rao, Xianfei Sun, Qingwen Tang, Ruijing Tang, Yusa Wang, Yibo Xu, Sheng Yang, Yanji Yang, Yong Yang, Xuan Zhang, Yueting Zhang, Heng Zhou, Kang Zhao, Qingchang Zhao, Shujie Zhao, Zijian Zhao
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引用次数: 0

摘要

摘要 "追逐所有瞬变星座猎手"(CATCH)空间任务是一个智能星座,由 126 颗微型卫星组成,分为 A、B 和 C 三种类型,设计用于 X 射线观测,目的是研究动态宇宙。目前,我们正在积极开发 CATCH 任务的第一个探路者(CATCH-1),专门用于 A 型卫星。CATCH-1 配备了微孔光学器件(MPO)和 4 像素硅漂移探测器(SDD)阵列。为了评估其科学性能,包括光学系统的有效面积、在轨背景和望远镜灵敏度,我们在本研究中使用蒙特卡洛软件 Geant4 进行了模拟。对于 1 keV X 射线,MPO 光学系统的焦斑有效面积为 41 厘米,而考虑到 SDD 探测器的探测效率,整个望远镜系统在 1 keV 时的有效面积为 29 厘米。对背景的主要贡献来自宇宙 X 射线背景。假定CATCH-1的轨道为625公里,倾角为(29^\circ\),那么在0.5-4 keV的能量范围内,CATCH-1的总背景估计为(8.13times 10^{-2}\) counts s\(^{-1}\) 。根据中央探测器内的本底,并假定有一个类似于螃蟹的源光谱,在0.5-4 keV的能段内曝光10 \(^4\) s,估计理想的灵敏度可以达到 \(1.9 次 10^{-12}\) erg cm \(^{-2}\) s \(^{-1}\) 。此外,在模拟了地磁赤道附近低能量带电粒子造成的背景之后,我们确定没有必要安装磁偏转器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Simulation studies for the first pathfinder of the CATCH space mission

Simulation studies for the first pathfinder of the CATCH space mission

The Chasing All Transients Constellation Hunters (CATCH) space mission is an intelligent constellation consisting of 126 micro-satellites in three types (A, B, and C), designed for X-ray observation with the objective of studying the dynamic universe. Currently, we are actively developing the first Pathfinder (CATCH-1) for the CATCH mission, specifically for type-A satellites. CATCH-1 is equipped with Micro Pore Optics (MPO) and a 4-pixel Silicon Drift Detector (SDD) array. To assess its scientific performance, including the effective area of the optical system, on-orbit background, and telescope sensitivity, we employ the Monte Carlo software Geant4 for simulation in this study. The MPO optics exhibit an effective area of 41 cm\(^2\) at the focal spot for 1 keV X-rays, while the entire telescope system achieves an effective area of 29 cm\(^2\) at 1 keV when taking into account the SDD detector’s detection efficiency. The primary contribution to the background is found to be from the Cosmic X-ray Background. Assuming a 625 km orbit with an inclination of \(29^\circ \), the total background for CATCH-1 is estimated to be \(8.13\times 10^{-2}\) counts s\(^{-1}\) in the energy range of 0.5–4 keV. Based on the background within the central detector and assuming a Crab-like source spectrum, the estimated ideal sensitivity could achieve \(1.9\times 10^{-12}\) erg cm\(^{-2}\) s\(^{-1}\) for an exposure of 10\(^4\) s in the energy band of 0.5–4 keV. Furthermore, after simulating the background caused by low-energy charged particles near the geomagnetic equator, we have determined that there is no need to install a magnetic deflector.

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来源期刊
Experimental Astronomy
Experimental Astronomy 地学天文-天文与天体物理
CiteScore
5.30
自引率
3.30%
发文量
57
审稿时长
6-12 weeks
期刊介绍: Many new instruments for observing astronomical objects at a variety of wavelengths have been and are continually being developed. Furthermore, a vast amount of effort is being put into the development of new techniques for data analysis in order to cope with great streams of data collected by these instruments. Experimental Astronomy acts as a medium for the publication of papers of contemporary scientific interest on astrophysical instrumentation and methods necessary for the conduct of astronomy at all wavelength fields. Experimental Astronomy publishes full-length articles, research letters and reviews on developments in detection techniques, instruments, and data analysis and image processing techniques. Occasional special issues are published, giving an in-depth presentation of the instrumentation and/or analysis connected with specific projects, such as satellite experiments or ground-based telescopes, or of specialized techniques.
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