首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Physical-chemical characterization of a GEM side-on ~(10)B-based thermal neutron detector and analysis of its neutron diffraction performances
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Physical-chemical characterization of a GEM side-on ~(10)B-based thermal neutron detector and analysis of its neutron diffraction performances

机译:基于GEM的〜(10)B侧面热中子探测器的物理化学表征及其中子衍射性能分析

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摘要

The synergic interplay between nuclear physics, detector technology and solid state and surface sciences is a fundamental aspect of the development of new neutron detection devices. The synthesis technique and the physical–chemical properties of the B4C films used as a neutron-to-charged particle converter are described in relation to the GEM side-on thermal neutron detector. Neutron detection is performed allowing scattered neutrons to be converted into charged particles by means of a series of sheets covered by 10B-enriched boron carbide (B4C) layers placed along their flight path inside the detector. The extremely interesting performance shown by the detector in neutron diffraction measurements at the ISIS spallation neutron sources are discussed and related to the chemical–physical properties of the converting layers.
机译:核物理,探测器技术与固态和表面科学之间的协同作用是新型中子探测装置发展的基本方面。结合GEM侧面热中子探测器描述了用作中子-带电粒子转换器的B4C膜的合成技术和物理化学性质。进行中子检测,使散射的中子通过一系列被沿其在检测器内部的飞行路径放置的富含10B的碳化硼(B4C)层覆盖的薄片转化为带电粒子。讨论了探测器在ISIS散裂中子源的中子衍射测量中表现出的极其有趣的性能,并将其与转换层的化学-物理性质相关。

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