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Monte Carlo simulation of induced radioactive background in gamma-ray detector materials

机译:伽马射线探测器材料中放射性背景的蒙特卡洛模拟

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摘要

Induced activation in detector materials constitutes a major source of background for spaceborne /spl gamma/-ray instruments. Future detector systems will utilise a variety of background reduction techniques and novel detector materials to maximise signal-to-noise and resolution of the measurements taken, and assessment of the merits of different designs will require detailed attention to a wide range of physical processes. The Integrated Radiation Transport Suite (IRTS) has been applied to simulate the effects of spacecraft shielding against Van Allen and galactic cosmic-ray protons, the production of secondary hadrons, and induced radioactivity in and the response of /spl gamma/-ray detector materials. This paper discusses the physics requirements for these simulations, and the degree of success of the models through comparisons with experimental data obtained from Space Shuttle flights and proton-beam irradiation of detector materials.
机译:探测器材料中的诱导活化构成了星载/ spl伽玛/射线仪器的主要背景源。未来的检测器系统将利用各种背景减少技术和新颖的检测器材料来最大化信噪比和所测量的分辨率,并且评估不同设计的优劣将需要对广泛的物理过程进行详细关注。集成辐射运输套件(IRTS)已用于模拟航天器对范·艾伦和银河系宇宙射线质子的屏蔽效果,次级强子的产生以及/ splγ/射线探测器材料的感应放射性和响应。本文通过与航天飞机飞行和质子束辐照探测器材料获得的实验数据进行比较,讨论了这些模拟的物理要求以及模型的成功程度。

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