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Voxel-based Monte Carlo simulation of X-ray imaging and spectroscopy experiments

机译:基于体素的蒙特卡洛X射线成像和光谱实验的仿真

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摘要

A Monte Carlo code for the simulation of X-ray imaging and spectroscopy experiments in heterogeneous samples is presented.The energy spectrum,polarization and profile of the incident beam can be defined so that X-ray tube systems as well as synchrotron sources can be simulated.The sample is modeled as a 3D regular grid.The chemical composition and density is given at each point of the grid.Photoelectric absorption,fluorescent emission,elastic and inelastic scattering are included in the simulation.The core of the simulation is a fast routine for the calculation of the path lengths of the photon trajectory intersections with the grid voxels.The voxel representation is particularly useful for samples that cannot be well described by a small set of polyhedra.This is the case of most naturally occurring samples.In such cases,voxel-based simulations are much less expensive in terms of computational cost than simulations on a polygonal representation.The efficient scheme used for calculating the path lengths in the voxels and the use of variance reduction techniques make the code suitable for the detailed simulation of complex experiments on generic samples in a relatively short time.Examples of applications to X-ray imaging and spectroscopy experiments are discussed.
机译:提出了用于模拟异质样品中X射线成像和光谱实验的蒙特卡洛代码。可以定义入射光束的能谱,极化和轮廓,从而可以模拟X射线管系统以及同步加速器源将样品建模为3D规则网格,在网格的每个点给出化学成分和密度,模拟中包括光电吸收,荧光发射,弹性和非弹性散射。模拟的核心是一个快速例程用于计算与网格体素的光子轨迹相交的路径长度。体素表示法对于无法用少量多面体很好描述的样品特别有用,在大多数自然存在的样品中都是这种情况。 ,基于体素的模拟在计算成本上比在多边形表示上的模拟便宜得多。用于计算的有效方案体素中的路径长度以及方差减少技术的使用使该代码适合在较短的时间内对通用样本进行复杂实验的详细模拟。讨论了在X射线成像和光谱实验中的应用示例。

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