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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Pulse shape analysis of signals from SiPM-based CsI(Tl) detectors for low-energy protons: Saturation correction and particle identification
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Pulse shape analysis of signals from SiPM-based CsI(Tl) detectors for low-energy protons: Saturation correction and particle identification

机译:低能量质子的SIPM基CSI(TL)检测器信号的脉冲形状分析:饱和校正和粒子识别

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摘要

CsI(Tl) scintillation detectors based on a silicon photomultiplier (SiPM) were tested for low-energy proton detection. Pulse shape analysis of the SiPM signals with a transimpedance amplifier was conducted to investigate the saturation effect due to the recovery time of a pixel and to evaluate particle identification capability. To recover energy linearity, a saturation correction method based on a non-paralyzable dead time model was proposed. The setup using the SiPM with a 25 μm pixel pitch well separated protons and deuterons at energies from 3 to 12 MeV. Additionally, a readout circuit without an amplifier was tested to investigate another type of saturation due to the voltage drop effect.
机译:基于硅光电倍增管(SIPM)的CSI(TL)闪烁检测器进行低能量质子检测。通过跨阻抗放大器进行SIPM信号的脉冲形状分析,以研究引起像素的恢复时间和评估粒子识别能力的饱和效果。为了回收能量线性度,提出了一种基于非瘫痪的死区时间模型的饱和校正方法。使用具有25μm像素间距的SiPM的设置,从3至12mev的能量处于25μm像素间距很好地的质子和氘核。另外,测试没有放大器的读出电路,以研究由于电压降效应引起的另一种类型的饱和。

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