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Design and performance study of the LEPD silicon tracker onboard the CSES satellite

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【作者】 吴峰王焕玉赵小芸孟祥承徐岩冰王辉马宇蒨卢红王平石峰李新乔蒋文奇安振华于晓霞刘汉一

【Author】 WU Feng 1,2;1) WANG Huan-Yu 2;2) ZHAO Xiao-Yun 2 MENG Xiang-Cheng 2 XU Yan-Bing 2 WANG Hui 2 MA Yu-Qian 2 LU Hong 2 WANG Ping 2 SHI Feng 2 LI Xin-Qiao 2 JIANG Wen-Qi 2 AN Zhen-Hua 2 YU Xiao-Xia 2 LIU Han-Yi 2 1 Department of Modern Physics, University of Science and Technology of China, Hefei 230026, China 2 Key Laboratory of Particle Astrophysics (LPA), Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049, China

【机构】 Department of Modern Physics, University of Science and Technology of ChinaKey Laboratory of Particle Astrophysics (LPA),Institute of High Energy Physics,Chinese Academy of Sciences

【摘要】 The low energy particle detector (LEPD) is one of the main payloads onboard the China seismic electromagnetic satellite (CSES). The detector is designed to ascertain space electrons (0.1-10 MeV) and protons (2-50 MeV). It has the capability of identifying the electrons and protons, to measure the energy spectrum and the incident angle of the particles. The LEPD is made up of a silicon tracker system, a CsI (Tl) mini-calorimeter, an anti-coincidence system made by plastic scintillator, as well as electronics and a data acquisition system (DAQ). The tracker is also a kind of E-E telescope; it consists of two layers of double-sided silicon strip detectors (DSSD). The signals emerging from the silicon tracker can be read out by two pieces of application specific integrated circuit (ASIC), which also can generate an event trigger for the LEPD. The functions of the DSSD system in the LEPD for charged particles were tested by 241Am @5.486 MeV α particles. The results show that the DSSD system works well, and has high performance to detect charged particles and measure the position of incident particles.

【Abstract】 The low energy particle detector (LEPD) is one of the main payloads onboard the China seismic electromagnetic satellite (CSES). The detector is designed to ascertain space electrons (0.1–10 MeV) and protons (2–50 MeV). It has the capability of identifying the electrons and protons, to measure the energy spectrum and the incident angle of the particles. The LEPD is made up of a silicon tracker system, a CsI (Tl) mini-calorimeter, an anti-coincidence system made by plastic scintillator, as well as electronics and a data acquisition system (DAQ). The tracker is also a kind of E-E telescope; it consists of two layers of double-sided silicon strip detectors (DSSD). The signals emerging from the silicon tracker can be read out by two pieces of application specific integrated circuit (ASIC), which also can generate an event trigger for the LEPD. The functions of the DSSD system in the LEPD for charged particles were tested by 241Am @5.486 MeV α particles. The results show that the DSSD system works well, and has high performance to detect charged particles and measure the position of incident particles.

【基金】 Supported by China 863 High Technology Development Program “Study on identification and Quantitative Retriveval of the Lunar Surface Composition” (2010AA122203)
  • 【文献出处】 Chinese Physics C ,中国物理C , 编辑部邮箱 ,2013年02期
  • 【分类号】TL815
  • 【被引频次】5
  • 【下载频次】38
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