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Dependence of the energy resolution of a scintillating crystal on the readout integration time

机译:闪烁晶体的能量分辨率取决于读数积分时间

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摘要

The possibilty of performing high-rate calorimetry with a slow scintillating crystal is studied. In this experimental situation, to avoid pulse pile-up, it can be necessary to base the energy measurement on only a fraction of the emitted light, thus spoiling the energy resolution. This effect was experimentally studied with a BGO crystal and a photomultiplier followed by an integrator, by measuring the maximum amplitude of the signals. The experimental data show that the energy resolution is exclusively due to the statistical fluctuations of the number of photoelectrons contributing to the maximum amplitude. When such number is small its fluctuations are even smaller than those predicted by Poisson statistics. These results were confirmed by a Monte Carlo simulation which allows to estimate, in a general case, the energy resolution, given the total number of photoelectrons, the scintillation time and the integration time.
机译:研究了用慢速闪烁晶体进行高速量热的可能性。在这种实验情况下,为避免脉冲堆积,可能有必要将能量测量仅基于一部分发射光,从而破坏能量分辨率。通过测量信号的最大幅度,使用BGO晶体和光电倍增管,然后是积分器,对这种效应进行了实验研究。实验数据表明,能量分辨率完全是由于贡献最大振幅的光电子数量的统计波动引起的。当这个数字很小时,其波动甚至小于泊松统计所预测的波动。这些结果通过蒙特卡洛模拟得到了证实,在给定光电子总数,闪烁时间和积分时间的情况下,蒙特罗模拟通常可以估算能量分辨率。

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