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Monte Carlo Simulation Of The Data Acquisition Chain Of Scintillation Detectors

机译:蒙特卡罗闪烁探测器数据采集链仿真

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The good performance of a detector can be strongly affected by the instrumentation used to acquire the data. The possibility of anticipating how the acquisition chain will affect the signal can help in finding the best solution among different set-ups. In this work we developed a Monte Carlo code that aims to simulate the effect of the various components of a digital Data Acquisition system (DAQ) applied to scintillation detectors. The components included in the model are:the scintillator, the photomultiplier tube (PMT), the signal cable and the digitizer. We benchmarked the code against real data acquired with a NE213 scintillator, comparing simulated and real signal pulses induced by gamma-ray interaction. Then we studied the dependence of the energy resolution of a pulse height spectrum(PHS) on the sampling frequency and the bit resolution of the digitizer. We found that exceeding some values of the sampling frequency and the bit resolution improves only marginally the performance of the system. The method can be applied for the study of various detector systems relevant for nuclear techniques, such as in fusion diagnostics.
机译:探测器的良好性能可能受到用于获取数据的仪器的强烈影响。预期收购链如何影响信号的可能性可以有助于在不同的设置中找到最佳解决方案。在这项工作中,我们开发了一个蒙特卡罗代码,旨在模拟应用于闪烁探测器的数字数据采集系统(DAQ)的各种组件的效果。模型中包含的组件是:闪烁体,光电倍增管(PMT),信号电缆和数字转换器。我们将代码与NE213闪烁体采集的真实数据进行基准测试,比较由伽马射线相互作用引起的模拟和实际信号脉冲。然后,我们研究了脉冲高频谱(PHS)对模拟频率和数字转换器的比特分辨率的依赖性的依赖性。我们发现超过了一些采样频率的值,并且该位分辨率仅限于系统的性能。该方法可以应用于研究与核技术相关的各种检测器系统,例如在融合诊断中。

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