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Measurements and simulations to investigate the feasibility of neutron multiplicity counting in the current mode of fission chambers

机译:测量和模拟,以研究裂变室电流模式中中子多重计数的可行性

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In two earlier papers [1], [2] we investigated the possibility of extracting traditional multiplicity count rates from the cumulants of fission chamber signals in current mode. It was shown that if all neutrons emitted from the sample simultaneously are also detected simultaneously, the multiplicity rates can be retrieved from the first three cumulants of the currents of up to three detectors, but the method breaks down if the detections of neutrons of common origin take place with a time delay spread wider than the pulse shape. To remedy these shortcomings, in this work we extended the theory to two- and three-point distributions (correlations). It was found thatthe integrals of suitably chosen two- and three-point moments with respect to the time differences become independent of the probability density of the time delays of detections. With this procedure, the multiplicity rates can be retrieved from the detector currents for arbitrary time delay distributions. To demonstrate the practical applicability of the proposed method, a measurement setup was designed and built. The statistics (shape and amplitude distribution) of the detector pulse were investigated as important parameters of the theoretical model. Simulations were performed to estimate the expected value of the multiplicity rates in the built setup. Measurements were performed and two types of moments (the mean and the covariance function) of the recorded detector signals were calculated. Values of singles rates were successfully recovered.
机译:在两个早期的论文中[1],[2]我们研究了从电流模式下从裂变室信号的累积量提取传统多重计数率的可能性。结果表明,如果同时检测来自样品的所有中子,则可以从最多三个探测器的电流的前三个累积物中检索多重速率,但如果常见的中子的检测,该方法可以分解。使用时间延迟展开宽度而不是脉冲形状进行。为了解决这些缺点,在这项工作中,我们将理论扩展到两点分布(相关性)。 It was found thatthe integrals of suitably chosen two- and three-point moments with respect to the time differences become independent of the probability density of the time delays of detections.利用此过程,可以从检测器电流从检测器电流检索多个时间延迟分布。为了证明所提出的方法的实际适用性,设计并构建了测量设置。检测器脉冲的统计(形状和幅度分布)作为理论模型的重要参数研究。执行模拟以估计内置设置中的多重速率的预期值。进行测量,并计算记录检测器信号的两种类型的矩(平均值和协方差函数)。单打率的价值成功恢复。

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