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Random walk on spheres method for solving anisotropic drift-diffusion problems

机译:解决各向异性漂移扩散问题的球上随机游动法

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We suggest a random walk on spheres based stochastic simulation algorithm for solving drift-diffusion-reaction problems with anisotropic diffusion. The diffusion coefficients and the velocity vector vary in space, and the size of the walking spheres is adapted to the local variation of these functions. The method is mesh free and extremely efficient for calculation of fluxes to boundaries and the concentration of the absorbed particles inside the domain. Applications to cathodoluminescence (CL) and electron beam induced current (EBIC) methods for the analysis of dislocations and other defects in semiconductors are discussed.
机译:我们建议基于球体的随机行走随机模拟算法来解决各向异性扩散的漂移-扩散-反应问题。扩散系数和速度矢量在空间中变化,并且步行球的大小适合于这些函数的局部变化。该方法是无网格的,并且对于计算通向边界的通量以及域内吸收粒子的浓度非常有效。讨论了阴极发光(CL)和电子束感应电流(EBIC)方法在分析半导体中的位错和其他缺陷方面的应用。

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