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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Detector identification by waveform shape analysis for effective data acquisition: Improvements in time resolution and count rate for positron annihilation age-momentum correlation measurement
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Detector identification by waveform shape analysis for effective data acquisition: Improvements in time resolution and count rate for positron annihilation age-momentum correlation measurement

机译:通过波形形状分析识别检测器,以有效采集数据:提高正电子an没年龄-动量相关性测量的时间分辨率和计数率

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摘要

In this paper, we propose a detector identification method that uses waveform shape analysis. This method can be used in many experimental contexts involving detectors, leading to effective data acquisition. Detector identification can additionally be used for other critical tasks, such as determining detector position. In this study, we used the proposed detector identification method to perform positron annihilation age-momentum correlation measurements. Instead, of one detector, four scintillation detectors were used for detecting 1.275 keV gamma-rays from Na-22, a positron emitter. This method resulted in a fourfold higher count rate. Therefore small scintillators that are inevitable to have a low count rate could be also used for scintillation detectors to improve the time resolution, as a favourable time resolution such as 170 ps (full width at half maximum) is often required in research.
机译:在本文中,我们提出了一种使用波形形状分析的检测器识别方法。这种方法可以在涉及检测器的许多实验环境中使用,从而实现有效的数据采集。检测器标识还可用于其他关键任务,例如确定检测器位置。在这项研究中,我们使用提出的探测器识别方法来执行正电子an没年龄-动量相关性测量。取而代之的是,使用四个闪烁探测器来探测来自正电子发射器Na-22的1.275 keV伽马射线。这种方法导致计数率提高了四倍。因此,不可避免的具有低计数率的小型闪烁体也可以用于闪烁探测器,以提高时间分辨率,因为在研究中通常需要诸如170 ps(半峰全宽)之类的有利时间分辨率。

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