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Alternative boundary conditions for solving optical diffusion equations by a finite difference time domain analysis in three-dimensional scattering medium

机译:三维散射介质中有限差分时域分析法求解光扩散方程的替代边界条件

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摘要

Alternative boundary conditions for solving optical diffusion equations in three-dimensional (3-D) scattering medium by a finite difference time domain (FDTD) analysis formulated by the author are proposed. The previous boundary conditions were defined only by fluence rate, which, although essential, is only one factor needed to solve approximated diffusion equations for fluence rate. In this paper, alternative boundary conditions defined both by fluence rate and radiant flux have been proposed for use in the FDTD analysis, which is derived from the two coupled differential equations for fluence rate and radiant flux. It has been become clear that these boundary conditions are almost equivalent to the previous boundary conditions in the FDTD analysis for sufficiently fine grid spacing. For the analysis with coarser grid spacing, the proposed boundary conditions suppress analytical errors, especially in intensity of time-resolved reflectance and transmittance.
机译:提出了作者拟定的时域有限差分时域分析法(FDTD),用于求解三维(3-D)散射介质中的光扩散方程的替代边界条件。先前的边界条件仅由注量率定义,尽管必不可少,但这只是求解注量率近似扩散方程所需的一个因素。本文提出了由通量率和辐射通量共同定义的替代边界条件,用于FDTD分析,它是从通量率和辐射通量的两个耦合微分方程派生而来的。显然,对于足够精细的网格间距,这些边界条件几乎等于FDTD分析中的先前边界条件。对于较粗的网格间距分析,所提出的边界条件可以抑制分析误差,特别是在时间分辨反射率和透射率方面。

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