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Exploring the limiting timing resolution for large volume CZT detectors with waveform analysis

机译:通过波形分析探索大容量CZT检测器的极限定时分辨率

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摘要

This paper presents a study for exploring the limiting timing resolution that can be achieved with a large volume 3-D position sensitive CZT detector. The interaction timing information was obtained by fitting the measured cathode waveforms to pre-defined waveform models. We compared the results from using several different waveform models. Timing resolutions, of ~9.5 ns for 511 keV full-energy events and ~11.6 ns for all detected events with energy deposition above 250 keV, were achieved with a detailed modeling of the cathode waveform as a function of interaction location and energy deposition. This detailed modeling also allowed us to derive a theoretical lower bound for the error on estimated interaction timing. Both experimental results and theoretical predications matched well, which indicated that the best timing resolution achievable in the 1 cm3 CZT detector tested is ~10 ns. It is also showed that the correlation between sampled amplitudes in cathode waveforms is an important limiting factor for the achievable timing resolution.
机译:本文提出了一项研究,以探索使用大体积3D位置敏感CZT检测器可以实现的极限定时分辨率。通过将测得的阴极波形拟合到预定义的波形模型,可以获得交互时序信息。我们比较了使用几种不同波形模型的结果。通过对阴极波形进行详细建模,将其作为相互作用位置和能量沉积的函数,可获得511 keV全能量事件的约9.5 ns的定时分辨率和所有能量沉积高于250 keV的所有检测到的事件的约11.6 ns的定时分辨率。这种详细的模型还使我们能够得出估计的交互时序误差的理论下限。实验结果和理论预测均吻合良好,表明在测试的1 cm 3 CZT检测器中可获得的最佳定时分辨率约为10 ns。还表明,阴极波形的采样幅度之间的相关性是可实现的时序分辨率的重要限制因素。

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