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首页> 外文期刊>IEEE Transactions on Nuclear Science >Application of the digital pulse processing technique to gas proportional scintillation counters
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Application of the digital pulse processing technique to gas proportional scintillation counters

机译:数字脉冲处理技术在气体比例闪烁计数器中的应用

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摘要

Digital signal processing techniques have been developed to analyze the signals from a gas proportional scintillation counter (GPSC). Compared to analog systems, the digital technique is a very simple and powerful tool for manipulating and improving pulse-height distributions with no additional electronic components. Among the features inherent in digital signal processing are pulse risetime discrimination, pulse pileup correction and rejection, and background rejection. By allowing the rejection of signal pulses from X-ray interactions within the scintillation region and/or near insensitive regions of the detector, an improvement in the pulse-height distribution has been effectively achieved. Using this technique the energy resolution for the 22.1 keV line of a /sup 109/Cd X-ray source improves from 5.6 to 5.1% and the peak-to-background ratio increases from 30 to 170.
机译:已经开发了数字信号处理技术来分析来自气体比例闪烁计数器(GPSC)的信号。与模拟系统相比,数字技术是一种非常简单而强大的工具,无需额外的电子组件即可操纵和改善脉冲高度分布。数字信号处理固有的功能包括脉冲上升时间识别,脉冲堆积校正和抑制以及背景抑制。通过允许来自探测器的闪烁区域内和/或不敏感区域附近的X射线相互作用的信号脉冲被拒绝,有效地实现了脉冲高度分布的改善。使用此技术,/ sup 109 / Cd X射线源的22.1 keV线的能量分辨率从5.6%提高到5.1%,峰本比从30提高到170。

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