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Correction of dead-time and pile-up in a detector array for constant and rapidly varying counting rates

机译:校正检测器阵列中的停滞时间和堆积,以保持恒定且快速变化的计数率

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The effect of dead-time and pile-up in counting experiments may become a significant source of uncertainty if not properly taken into account. Although analytical solutions to this problem have been proposed for simple set-ups with one or two detectors, these are limited when it comes to arrays where time correlation between the detector modules is used, and also in situations of variable counting rates. In this paper we describe the dead-time and pile-up corrections applied to the n_TOF Total Absorption Calorimeter (TAC), a 4π γ-ray detector made of 40 BaF_2 modules operating at the CERN n_TOF facility. Our method is based on the simulation of the complete signal detection and event reconstruction processes and can be applied as well in the case of rapidly varying counting rates. The method is discussed in detail and then we present its successful application to the particular case of the measurement of ~(238)U(n,γ) reactions with the TAC detector.
机译:如果没有适当考虑,停滞时间和堆积在计数实验中的影响可能会成为不确定性的重要来源。尽管已经针对具有一个或两个检测器的简单设置提出了针对该问题的分析解决方案,但是当涉及在其中使用检测器模块之间的时间相关性的阵列以及在可变计数率的情况下,这些解决方案受到限制。在本文中,我们描述了应用于n_TOF总吸收量热仪(TAC)的停滞时间和堆积校正,TAC是由在CERN n_TOF设施中运行的40个BaF_2模块制成的4πγ射线探测器。我们的方法基于完整信号检测和事件重建过程的仿真,并且在计数率快速变化的情况下也可以应用。对该方法进行了详细讨论,然后我们将其成功应用于通过TAC检测器测量〜(238)U(n,γ)反应的特殊情况。

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