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Cosmic gamma-ray spectrometer with tagged charged particles of Galactic Cosmic Rays

机译:带有标记的银河宇宙射线带电粒子的宇宙伽玛射线光谱仪

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A new concept is proposed for the study of the elemental composition of planetary surfaces on landed missions through the coincident detection of gamma rays induced by Galactic Cosmic Ray (GCR) charged particles and the detection of the incident charged particle that produces the gamma ray. Charged particle detection is used to tag all instances of GCR interaction in a selected volume of the subsurface that results in the emission of secondary gamma rays. Using the criteria of a tagged GCR particle and coincident gamma ray detection, one may measure gamma ray spectra produced in a selected subsurface volume by GCR induced spallation and inelastic scattering of fast neutrons. The proposed new technique minimizes the contribution of gamma radiation from other regions of the subsurface and spacecraft structural components that may add background to the measured gamma-ray spectrum from the selected soil volume.
机译:通过同时检测由银河宇宙射线(GCR)带电粒子诱发的伽马射线和检测产生伽马射线的入射带电粒子,提出了一个新概念用于研究着陆任务上行星表面的元素组成。带电粒子检测用于标记地下选定体积中GCR相互作用的所有实例,从而导致产生次级伽马射线。使用标记的GCR粒子和同时进行伽马射线检测的标准,可以测量由GCR引起的散裂和快速中子的非弹性散射在选定的地下体积中产生的伽马射线光谱。拟议的新技术将来自地下和航天器结构部件其他区域的伽马辐射的贡献降到最低,这可能会增加所选土壤体积中被测伽马射线谱的背景。

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