首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Analysis of the performance of photon detection methods using silicon photomultiplier in the application with high throughput requirements
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Analysis of the performance of photon detection methods using silicon photomultiplier in the application with high throughput requirements

机译:应用高吞吐量要求中硅光电倍增器的光子检测方法性能分析

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An analysis and comparison of the performance of photon detection methods using a silicon photomultiplier (SiPM) in applications which require fast timings is presented. The front-end circuit enables measurement of the amplitude, charge, width of the pulse from the SiPM (time over threshold) and counting of events. The system was tested by generating light of different intensities where signals tend to pile-up. The signals generated by various numbers of photons are well separated on the single photon spectra. All methods have strong linearity parameters. The amplitude and charge methods are more accurate, have higher r-squared values, lower prediction intervals and higher sensitivity. On the other hand they require a more complicated readout system. The event's counting and ToT methods have weaker parameters; however the advantage is simpler readout.
机译:呈现了在需要快速定时的应用中使用硅光电倍增器(SIPM)的光子检测方法性能的分析与比较。前端电路能够测量来自SIPM的幅度,电荷,脉冲的宽度(时间超过阈值)和事件的计数。通过产生不同强度的光来测试系统,其中信号倾向于堆积。各种数量的光子产生的信号在单个光子谱上很好地分开。所有方法都具有强线性参数。幅度和电荷方法更准确,具有更高的R线值,预测间隔较低,灵敏度更高。另一方面,他们需要更复杂的读数系统。事件的计数和TOT方法具有较弱的参数;然而,优点是简单读数。

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