Low temperature testing and neutron irradiation of a swept charge device on board the HXMT satellite

We present the low temperature testing of an SCD detector, investigating its performance such as readout noise, energy resolution at 5.9 keV and dark current. The SCD’s performance is closely related to temperature, and the temperature range of 80℃ to 50℃ is the best choice, where the FWHM at 5.9 ke...

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Veröffentlicht in:Chinese physics C 2012-10, Vol.36 (10), p.991-995
1. Verfasser: 王于仨 陈勇 徐玉朋 杨彦佶 崔苇苇 李茂顺 刘晓艳 王娟 韩大炜 陈田祥 李承奎 霍嘉 李正伟 李炜 胡渭 张艺 陆波 朱玥 刘琰 吴帝 孙庆荣 张子良
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container_title Chinese physics C
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creator 王于仨 陈勇 徐玉朋 杨彦佶 崔苇苇 李茂顺 刘晓艳 王娟 韩大炜 陈田祥 李承奎 霍嘉 李正伟 李炜 胡渭 张艺 陆波 朱玥 刘琰 吴帝 孙庆荣 张子良
description We present the low temperature testing of an SCD detector, investigating its performance such as readout noise, energy resolution at 5.9 keV and dark current. The SCD’s performance is closely related to temperature, and the temperature range of 80℃ to 50℃ is the best choice, where the FWHM at 5.9 keV is about 130 eV. The influence of the neutron irradiation from an electrostatic accelerator with fluence up to 1 × 109 cm-2 has been examined. We find the SCD is not vulnerable to neutron irradiation. The detailed operations of the SCD and the test results of low temperature are reported, and the results of neutron irradiation are discussed.
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source IOP Publishing Journals; Institute of Physics (IOP) Journals - HEAL-Link; Alma/SFX Local Collection
subjects Accelerators
Charge
Devices
Electrostatics
Fluence
HXMT
Neutron irradiation
Noise
Satellites
中子照射
低温试验
充电设备
卫星
后掠
温度范围
能量分辨率
title Low temperature testing and neutron irradiation of a swept charge device on board the HXMT satellite
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