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A novel method for modeling the neutron time of flight detector response in current mode to inertial confinement fusion experiments (invited)

机译:建模电流模式中子飞行时间检测器对惯性约束聚变实验的一种新颖方法(已邀请)

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摘要

A novel method for modeling the neutron time of flight (nTOF) detector response in current mode for inertial confinement fusion experiments has been applied to the on-axis nTOF detectors located in the basement of the Z-Facility. It will be shown that this method can identify sources of neutron scattering, and is useful for predicting detector responses in future experimental configurations, and for identifying potential sources of neutron scattering when experimental set-ups change. This method can also provide insight on how much broadening neutron scattering contributes to the primary signals, which is then subtracted from them. Detector time responses are deconvolved from the signals, allowing a transformation from dN/dt to dN/dE, extracting neutron spectra at each detector location; these spectra are proportional to the absolute yield.
机译:一种用于模拟当前模式下的中子飞行时间(nTOF)检测器响应的惯性约束融合实验的新颖方法,已应用于位于Z设施地下室的同轴nTOF检测器。将会显示,该方法可以识别中子散射源,并且对于预测未来实验配置中的检测器响应,以及在实验设置发生变化时识别中子散射的潜在源很有用。该方法还可以提供关于中子散射扩展对原始信号有多大贡献的见解,然后从原始信号中减去原始信号。探测器的时间响应从信号中解卷积,从而允许从dN / dt转换为dN / dE,从而在每个探测器位置提取中子光谱。这些光谱与绝对产量成正比。

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