Neutron dosimetry with detectors of finite size. I. Theory.

A Montelius
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引用次数: 2

Abstract

A theory for detector response in fields of fast neutrons has been developed. The theory is valid for convex detectors of all sizes exposed to isotropic fields of neutrons. In the theory the detector shape is characterized by distributions of chord lengths along which the neutron produced charged particles travel and deposit energy. Chord length distributions for charged particles generated in the surrounding medium (externals) and in the detector itself (internals) are presented for spheres, spheroids, cylinders and parallel plane geometries. The form on which the theory is written makes it possible to evaluate the theory with simplified assumptions, such as characterizing the detector with a single mean chord length for the external particles. Specifically, the response of ionization chambers has been considered, taking into account the energy dependence of the W-values for the different charged particles. In a following article (part II) the theory will be subjected to experimental test.

有限尺寸探测器的中子剂量测定。即理论。
提出了一种快中子场中探测器响应的理论。该理论适用于暴露于各向同性中子场的各种尺寸的凸探测器。在该理论中,探测器的形状以弦长的分布为特征,中子产生的带电粒子沿着弦长的分布运动并沉积能量。在周围介质(外部)和探测器本身(内部)中产生的带电粒子的弦长分布呈现了球体,椭球体,圆柱体和平行平面几何形状。该理论的书写形式使得用简化的假设来评价该理论成为可能,例如用外部粒子的单一平均弦长来表征探测器。具体来说,考虑到不同带电粒子w值的能量依赖性,考虑了电离室的响应。在接下来的文章(第二部分)中,将对该理论进行实验检验。
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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