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使用小波变换技术的半导体伽马射线探测器的数字脉冲定时

Digital pulse timing with semiconductor gamma-ray detectors using a wavelet transform technique.

作者信息

Nakhostin M

机构信息

Department of Physics, University of Surrey, Guildford GU2 7XH, United Kingdom.

出版信息

Rev Sci Instrum. 2018 Oct;89(10):103303. doi: 10.1063/1.5050074.

Abstract

Obtaining precise timing information from semiconductor gamma-ray detectors is of great interest for a variety of applications such as high-resolution positron emission tomography. However, pulse timing with these detectors through the common constant-fraction discrimination (CFD) method is strongly affected by the time-walk error that results from the inherent variations in the shape of the detectors' pulses. This paper reports on the use of the wavelet transform for minimizing the time-walk error in digital CFD pulse timing with semiconductor gamma-ray detectors. The details of the method are described, and the experimental results with a 1 mm thick CdTe detector are shown. It is demonstrated that, by using the Haar wavelet transform of the digitized preamplifier pulses, the original tailed time spectrum of the detector with a time resolution of 8.22 ± 0.12 ns at full-width at half-maximum (FWHM) in the energy range of 300-550 keV improves to a symmetric time spectrum with a time resolution of 3.39 ± 0.02 ns (FWHM).

摘要

从半导体伽马射线探测器获取精确的定时信息,对于诸如高分辨率正电子发射断层扫描等各种应用而言具有重大意义。然而,通过常见的恒比甄别(CFD)方法对这些探测器进行脉冲定时时,会受到时间游动误差的强烈影响,该误差源于探测器脉冲形状的固有变化。本文报道了利用小波变换来最小化半导体伽马射线探测器数字CFD脉冲定时中的时间游动误差。文中描述了该方法的细节,并展示了使用1毫米厚碲化镉探测器的实验结果。结果表明,通过对数字化前置放大器脉冲进行哈尔小波变换,在300 - 550 keV能量范围内半高宽(FWHM)处时间分辨率为8.22 ± 0.12 ns的探测器原始拖尾时间谱,改善为时间分辨率为3.39 ± 0.02 ns(FWHM)的对称时间谱。

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