Hu Chuan-hao, Zeng Guo-qiang, Ge Liang-quan, Yu Ming-fu, Wei Shi-long, Zhang Kai-qi, Yang Jian, Chen Chuan
Guang Pu Xue Yu Guang Pu Fen Xi. 2017 Jan;37(1):262-6.
Semiconductor detector is widely used in energy dispersive X-ray fluorescence measurements due to its excellent performance. In this paper, Si-PIN and CdTe semiconductor detectors were studied, performances of the two detectors were compared in material properties, detection efficiency, energy resolution and other aspects. Focused on the performance of the detectors influenced by the thickness of detector sensitive area, energy of incident X-ray, shaping time of post-stage circuit, and analyzed the differences of energy spectrum caused by escape peaks and hole trailing. Aiming at the problem of incomplete hole collection in detector, a digital multi-channel analyzer (DMCA) based on FPGA with rise-time discriminator was designed, it could reduce the influence of hole trailing effectively and improve energy resolution. The experimentation results indicate that the detection efficiency of Si-PIN and CdTe is roughly equal when energy is below 15 keV while CdTe has much higher detection efficiency than Si-PIN when energy is above 15 keV. The optimum forming time of the Si-PIN detector is about 10 μs, and the CdTe detector is about 2.6 μs, so the CdTe detector is more suitable for the high count rate condition. Si-PIN detector has better energy resolution than CdTe detector for different energy incident X-ray. CdTe detector has obvious hole tailing effect and the energy resolution of CdTe detector is significantly improved by using DMCA with rise-time discrimination.
半导体探测器因其优异的性能而广泛应用于能量色散X射线荧光测量中。本文对Si-PIN和CdTe半导体探测器进行了研究,比较了两种探测器在材料特性、探测效率、能量分辨率等方面的性能。重点研究了探测器灵敏区厚度、入射X射线能量、后级电路成形时间对探测器性能的影响,并分析了逃逸峰和空穴拖尾引起的能谱差异。针对探测器中空穴收集不完全的问题,设计了一种基于FPGA的带有上升时间鉴别器的数字多通道分析仪(DMCA),它可以有效降低空穴拖尾的影响并提高能量分辨率。实验结果表明,当能量低于15keV时,Si-PIN和CdTe的探测效率大致相等,而当能量高于15keV时,CdTe的探测效率比Si-PIN高得多。Si-PIN探测器的最佳成形时间约为10μs,CdTe探测器约为2.6μs,因此CdTe探测器更适合高计数率条件。对于不同能量的入射X射线,Si-PIN探测器比CdTe探测器具有更好的能量分辨率。CdTe探测器具有明显的空穴拖尾效应,采用带有上升时间鉴别的DMCA可显著提高CdTe探测器的能量分辨率。