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首页> 外文期刊>Results in Physics >Application of Nonnegative Tensor Factorization for neutron-gamma discrimination of Monte Carlo simulated fission chamber’s output signals
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Application of Nonnegative Tensor Factorization for neutron-gamma discrimination of Monte Carlo simulated fission chamber’s output signals

机译:非负张量分解在蒙特卡罗模拟裂变室输出信号中子伽玛识别中的应用

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摘要

For efficient exploitation of research reactors, it is important to discern neutron flux distribution inside the reactor with the best possible precision. For this reason, fission and ionization chambers are used to measure the neutron field. In these arrays, the sequences of the neutron interaction points in the fission chamber can correctly be identified in order to obtain true neutron energies emitted by nuclei of interest. However, together with the neutrons, gamma-rays are also emitted from nuclei and thereby affect neutron spectra. The originality of this study consists in the application of tensor based blind source separation methods to extract independent components from signals recorded at the fission chamber preamplifier’s output. The objective is to achieve software neutron-gamma discrimination using Nonnegative Tensor Factorization tools. For reasons of nuclear safety, we first simulate the neutron flux inside the TRIGA Mark II Reactor using Monte Carlo methods under Geant4 platform linked to Garfield++. Geant4 simulations allow the fission chamber construction whereas linking the model to Garfield++ permits to simulate drift parameters from the ionization of the filling gas, which is not possible otherwise.
机译:为了有效利用研究堆,辨别出反应堆内部的中子通量分布具有最佳可能的精度非常重要。因此,裂变室和电离室用于测量中子场。在这些阵列中,裂变室中的中子相互作用点的序列可以正确地确定,以便获得由所关注的原子核发出的真实中子能量。然而,与中子一起,γ射线也从原子核中发射出来,从而影响中子光谱。这项研究的独创性在于应用基于张量的盲源分离方法,从裂变室前置放大器输出记录的信号中提取独立分量。目的是使用非负张量因子分解工具实现软件中子-伽玛识别。出于核安全的考虑,我们首先在与Garfield ++链接的Geant4平台下,使用蒙特卡洛方法在TRIGA Mark II反应堆内部模拟中子通量。 Geant4模拟允许裂变室的构造,而将模型链接到Garfield ++则可以模拟填充气体电离的漂移参数,否则是不可能的。

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