首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >The X-ray performance of a driftless gas proportional scintillation counter using short shaping-time constants for pulse analysis
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The X-ray performance of a driftless gas proportional scintillation counter using short shaping-time constants for pulse analysis

机译:使用短整形时间常数进行脉冲分析的无漂移气体比例闪烁计数器的X射线性能

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Performance characteristics are evaluated for a xenon driftless gas proportional scintillation counter (GPSC), for which detector pulses are formatted using very short shaping-time constants (~50 ns), and directly analyzed by the MCA without previous pulse time duration analysis and amplitude correction. The present detector and method allow the achievement of detector energy linearity and energy resolution similar to those of conventional GPSCs, reducing background levels and maximizing the detector count-rate capability. However, the obtained peak tails can be somewhat larger than those obtained with conventional GPSCs for X-ray energies above ~30 keV. Energy resolutions of 7.7%, 4.5% and 3.8% can be achieved for 5.9, 22.1 and 59.6 keV X-rays, respectively.
机译:对氙气无漂移气体比例闪烁计数器(GPSC)的性能特征进行了评估,其使用很短的整形时间常数(〜50 ns)格式化检测器脉冲,并由MCA直接分析,而无需事先进行脉冲持续时间分析和幅度校正。本检测器和方法允许实现与常规GPSC类似的检测器能量线性和能量分辨率,从而降低背景水平并最大化检测器计数率能力。但是,对于高于〜30 keV的X射线能量,所获得的峰尾可能会比使用传统GPSC获得的峰尾大一些。 5.9、22.1和59.6 keV X射线可以分别实现7.7%,4.5%和3.8%的能量分辨率。

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