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Thermal experiment of silicon PIN detector
作者姓名:陈鸿飞  邹积清  施伟红  邹鸿  胡然生  田大宇
作者单位:School of Earth and Space Sciences,Peking University,Beijing Nuclear Instrument Factory of China National Nuclear Corporation,Institute of Microelectronics,Peking University
摘    要:The experiment of this paper is the thermal test of the leakage current of silicon PIN detector. Raising temperature may cause the detector to increase leakage current, decrease depletion and increase noise. Three samples are used in the experiment. One (called ΔE) is the sample of 100 μm in thickness. The other two (called E1 and E2) are stacks of five detectors of 1000 μm in thickness. All of them are 12 mm in diameter. The experiment has been done for 21 hours and with power on continuously. The samples have undergone more than 60℃ for about one hour. They are not degenerated when back to the room temperature. The depletion rate is temperature and bias voltage related. With the circuit of the experiment and temperature at 35℃, ΔE is still depleted while E1 and E2 are 94.9% and 99.7% depleted respectively. The noises of the samples can be derived from the values at room temperature and the thermal dependence of the leakage currents. With the addition of the noise of the pre-amplifier, the noises of E1, E2 and ΔE at 24℃ are 16.4, 16.3, and 10.5 keV (FWHM) respectively while at 35℃ are about 33.6, 33.1, and 20.6 keV (FWHM) respectively.

关 键 词:thermal  effects    PIN  detector    radiation  detection    energetic  particle    space  environment
收稿时间:2007-12-10
修稿时间:2008-3-25

Thermal experiment of silicon PIN detector
CHEN Hong-Fei, ZOU Ji-Qing SHI Wei-Hong ZOU Hong HU Ran-Sheng TIAN Da-Yu.Thermal experiment of silicon PIN detector[J].High Energy Physics and Nuclear Physics,2008,32(10):820-824.
Authors:CHEN Hong-Fei  ZOU Ji-Qing SHI Wei-Hong ZOU Hong HU Ran-Sheng TIAN Da-Yu
Institution:[1]School of Earth and Space Sciences, Peking University, Beijing 100871, China [2]Beijing Nuclear Instrument Factory of China National Nuclear Corporation, Beijing 100020, China [3]Institute of Microelectronics, Peking University, Beijing 100871, China
Abstract:
Keywords:thermal effects  PIN detector  radiation detection  energetic particle  space environment
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