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Measurement of the thick target ~7Li(p,n) neutron source spectrum using a ~3He ionization chamber

机译:使用〜3He电离室测量厚靶〜7Li(p,n)中子源光谱

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摘要

Neutron spectra from the thick target ~7Li(p,n)~7Be reaction were measured using a ~3He ionization chamber in the proton energy region of 1.95-2.30 MeV. A digital pulse processing system was employed for pulse height analysis to achieve an enhanced pulse pile-up rejection. For analyses of measured spectra, an unfolding code was written according to the van Cittert iterative algorithm with Janssen constraint. When testing the unfolding with an ideal ftuence spectrum, cross-correlation filtering was found to be useful for stabilizing the result with noisy data. Only the high-energy part of the measured spectra (above 794 keV) was used in unfolding due to the interference from the thermal peak tail. Theoretical neutron spectra were also calculated by combining the analytical spectra from the ~7Li(p,n) cross-section data with Monte Carlo simulation. A significant spectral modification was introduced by the lithium target holder assembly and the cooling water. The theoretical spectra were compared with the unfolded spectra and their patterns were consistent.
机译:使用〜3He电离室在1.95-2.30 MeV的质子能区内测量了厚目标〜7Li(p,n)〜7Be反应的中子光谱。数字脉冲处理系统用于脉冲高度分析,以实现增强的脉冲堆积抑制率。为了分析测量的光谱,根据具有Janssen约束的van Cittert迭代算法编写了展开代码。当用理想的频谱图测试展开时,发现互相关滤波对于用噪声数据稳定结果是有用的。由于来自热峰尾的干扰,仅将测得光谱的高能部分(794 keV以上)用于展开。理论中子光谱也通过将来自〜7Li(p,n)横截面数据的分析光谱与蒙特卡洛模拟相结合来计算。锂靶支架组件和冷却水引入了明显的光谱变化。将理论光谱与展开光谱进行比较,并且它们的图案是一致的。

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