Monte Carlo modeling of coherent scattering: influence of interference

C. J. Leliveld, J. Maas, V. Bom, C. V. van Eijk
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引用次数: 33

Abstract

In this study, the authors present Monte Carlo (MC) simulation results for the intensity and angular distribution of scattered radiation from cylindrical absorbers. For coherent scattering the authors have taken into account the effects of interference by using new molecular form factor data for the AAPM plastic materials and water. The form factor data were compiled from X-ray diffraction measurements. The new data have been implemented in the authors' Electron Gamma Shower (EGS4) Monte Carlo system. The hybrid MC simulation results show a significant influence on the intensity and the angular distribution of coherently scattered photons. It is concluded that MC calculations are significantly in error when interference effects are ignored in the model for coherent scattering. Especially for simulation studies of scattered radiation in collimated geometries, where small angle scattering will prevail, the coherent scatter contribution is highly overestimated when conventional form factor data are used.
相干散射的蒙特卡罗模拟:干涉的影响
本文用蒙特卡罗(MC)方法模拟了圆柱形吸收体散射辐射的强度和角分布。对于相干散射,作者利用新的AAPM塑料材料和水的分子形状因子数据考虑了干扰的影响。形状因子数据是从x射线衍射测量中编译的。新数据已在作者的电子伽马雨(EGS4)蒙特卡罗系统中实现。混合MC模拟结果表明,混合MC对相干散射光子的强度和角分布有显著影响。结果表明,在相干散射模型中忽略干涉效应时,MC计算误差较大。特别是对于准直几何散射辐射的模拟研究,其中小角度散射将占上风,当使用传统的形状因子数据时,相干散射贡献被高度高估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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