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Estimation of the lead thickness required to shield scattered radiation from synchrotron radiation experiments

机译:估计屏蔽来自同步加速器辐射实验的散射辐射所需的铅厚度

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摘要

In the enclosure of synchrotron radiation experiments using a monochromatic beam, secondary radiation arises from two effects, namely fluorescence and scattering. While fluorescence can be regarded as isotropic, the angular dependence of Compton scattering has to be taken into account if the shielding shall not become unreasonably thick. The scope of this paper is to clarify how the different factors starting from the spectral properties of the source and the attenuation coefficient of the shielding, over the spectral and angular distribution of the scattered radiation and the geometry of the experiment influence the thickness of lead required to keep the dose rate outside the enclosure below the desired threshold. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在使用单色光束的同步辐射实验中,次级辐射源于两种效应,即荧光和散射。虽然荧光可以被认为是各向同性的,但是如果屏蔽层不会变得不合理地厚,则必须考虑康普顿散射的角度依赖性。本文的范围是要阐明从辐射源的光谱特性和屏蔽的衰减系数开始的各种因素如何影响散射辐射的光谱和角度分布以及实​​验的几何形状如何影响所需的铅厚度保持外壳外部的剂量率低于所需阈值。 (C)2014 Elsevier Ltd.保留所有权利。

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