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用于低反照率介质中光子迁移增强近场建模的虚拟源扩散近似

Virtual-source diffusion approximation for enhanced near-field modeling of photon-migration in low-albedo medium.

作者信息

Jia Mengyu, Chen Xueying, Zhao Huijuan, Cui Shanshan, Liu Ming, Liu Lingling, Gao Feng

出版信息

Opt Express. 2015 Jan 26;23(2):1337-52. doi: 10.1364/OE.23.001337.

Abstract

Most analytical methods for describing light propagation in turbid medium exhibit low effectiveness in the near-field of a collimated source. Motivated by the Charge Simulation Method in electromagnetic theory as well as the established discrete source based modeling, we herein report on an improved explicit model for a semi-infinite geometry, referred to as "Virtual Source" (VS) diffuse approximation (DA), to fit for low-albedo medium and short source-detector separation. In this model, the collimated light in the standard DA is analogously approximated as multiple isotropic point sources (VS) distributed along the incident direction. For performance enhancement, a fitting procedure between the calculated and realistic reflectances is adopted in the near-field to optimize the VS parameters (intensities and locations). To be practically applicable, an explicit 2VS-DA model is established based on close-form derivations of the VS parameters for the typical ranges of the optical parameters. This parameterized scheme is proved to inherit the mathematical simplicity of the DA approximation while considerably extending its validity in modeling the near-field photon migration in low-albedo medium. The superiority of the proposed VS-DA method to the established ones is demonstrated in comparison with Monte-Carlo simulations over wide ranges of the source-detector separation and the medium optical properties.

摘要

大多数用于描述光在混浊介质中传播的分析方法在准直光源的近场中效率较低。受电磁理论中的电荷模拟方法以及已建立的基于离散源的建模方法的启发,我们在此报告一种针对半无限几何结构的改进显式模型,称为“虚拟源”(VS)漫射近似(DA),以适用于低反照率介质和短源 - 探测器间距。在该模型中,标准DA中的准直光类似地近似为沿入射方向分布的多个各向同性点源(VS)。为了提高性能,在近场中采用计算反射率与实际反射率之间的拟合过程来优化VS参数(强度和位置)。为了实际应用,基于光学参数典型范围的VS参数的闭式推导建立了显式2VS - DA模型。该参数化方案被证明继承了DA近似的数学简单性,同时在模拟低反照率介质中的近场光子迁移时大大扩展了其有效性。与蒙特卡罗模拟相比,在所提出的VS - DA方法在源 - 探测器间距和介质光学性质的广泛范围内优于已有的方法。

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