Neutron dosimetry with detectors of finite size. II. Experiments and calculations.

A Montelius, T E Burlin, J Briggs
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引用次数: 1

Abstract

In a previous article a theory for detector response in fields of fast neutrons was presented. In the present paper this theory is subjected to experimental tests. For detectors of sizes comparable to the ranges of the neutron produced charged particles the theory predicts the variation of the detector response with detector size and elemental composition of the detector. A tissue-equivalent ionization chamber exposed to a field of 252Cf neutrons was used in the experimental tests of the theory. The size dependence of the response was investigated by varying the chamber gas pressure and the effects of different elemental compositions (mainly hydrogen content) was investigated by using different gases in the chamber (H2, CH4, TE-gas N2, Air, CO2, and Ar). The theory was evaluated both by using chord length distributions to characterize the chamber cavity and with a simplified version using a single mean chord length. The agreement between theory and experiment is generally good.

有限尺寸探测器的中子剂量测定。2实验和计算。
在前一篇文章中提出了快中子场中探测器响应的理论。本文对这一理论进行了实验验证。对于大小与中子产生的带电粒子的范围相当的探测器,该理论预测了探测器响应随探测器大小和探测器元素组成的变化。该理论的实验测试使用了一个暴露于252Cf中子场的组织等效电离室。通过改变腔内气体压力来研究响应的大小依赖性,并通过使用不同的腔内气体(H2, CH4, TE-gas N2, Air, CO2和Ar)来研究不同元素组成(主要是氢含量)对响应的影响。该理论通过使用弦长分布来表征腔室腔和使用单个平均弦长简化版本来评估。理论与实验的一致性总体上是好的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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