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Finite-difference time-domain and steady-state analysis with novel boundary conditions of optical transport in a three-dimensional scattering medium illuminated by an isotropic point source

机译:各向同性点光源照射的三维散射介质中光传输新边界条件的时域有限差分和稳态分析

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摘要

We evaluate the numerical accuracy of finite-difference time-domain (FDTD) analysis of optical transport in a three-dimensional scattering medium illuminated by an isotropic point source. This analysis employs novel boundary conditions for the diffusion equation. The power radiated from an isotropic point source located at a depth equal to the reciprocal of the reduced scattering coefficient (1/(mu)_(s)~(')) below the surface at the irradiated position is introduced to the integral form of the diffusion equation. Finite-difference approximations of the diffusion equation for a surface cell are derived by utilizing new boundary conditions that include an isotropic source even in a surface cell. Steady-state and time-resolved reflectances are calculated by FDTD analysis for a semi-infinite uniform scattering medium illuminated by an isotropic point source. The numerical results agree reasonably with the analytical solutions for (mu)_(s)~(') velence 1-3 mm~(-1) without resizing the mesh elements.
机译:我们评估了在各向同性点源照亮的三维散射介质中光传输的时差有限域(FDTD)分析的数值准确性。该分析对扩散方程采用了新的边界条件。从位于辐射位置下表面以下深度处的等效点光源的能量等于减少的散射系数(1 /μ_(s)〜('))的倒数的倒数,将其引入扩散方程。通过利用新的边界条件(包括表面单元中的各向同性源),可以得出表面单元扩散方程的有限差分近似。通过FDTD分析,计算各向同性点光源照射的半无限均匀散射介质的稳态和时间分辨反射率。数值结果与mu_(s)〜(')速度1-3 mm〜(-1)的解析解合理吻合,而无需调整网格元素的大小。

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