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Instrumental background in balloon-borne gamma-ray spectrometers and techniques for its reduction

机译:气球型伽马射线能谱仪的仪器背景及其降低技术

摘要

Instrumental background in balloon-borne gamma-ray spectrometers is presented. The calculations are based on newly available interaction cross sections and new analytic techniques, and are the most detailed and accurate published to date. Results compare well with measurements made in the 20 keV to 10 MeV energy range by the Goddard Low Energy Gamma-ray Spectrometer (LEGS). The principal components of the continuum background in spectrometers with GE detectors and thick active shields are: (1) elastic neutron scattering of atmospheric neutrons on the Ge nuclei; (2) aperture flux of atmospheric and cosmic gamma rays; (3) beta decays of unstable nuclides produced by nuclear interactions of atmospheric protons and neutrons with Ge nuclei; and (4) shield leakage of atmospheric gamma rays. The improved understanding of these components leads to several recommended techniques for reducing the background.
机译:介绍了气球型伽马射线能谱仪的仪器背景。这些计算基于最新可用的交互作用截面和新的分析技术,并且是迄今为止最详细,最准确的发布。结果与戈达德低能伽马射线能谱仪(LEGS)在20 keV至10 MeV能量范围内进行的测量结果相当。具有GE探测器和厚有源罩的光谱仪中连续背景的主要成分是:(1)大气中子在Ge核上的弹性中子散射; (2)大气和宇宙伽马射线的孔径通量; (3)大气质子和中子与锗核相互作用产生的不稳定核素的β衰变; (4)屏蔽大气伽马射线的泄漏。对这些组件的更好的了解导致了一些减少背景的推荐技术。

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    Gehrels N.;

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  • 年度 1985
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