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散射介质中频域测量的P(N)近似值。

P(N) approximation for frequency-domain measurements in scattering media.

作者信息

Faris Gregory W

机构信息

Molecular Physics Laboratory, SRI International, Menlo Park, California 94025-3493, USA.

出版信息

Appl Opt. 2005 Apr 10;44(11):2058-71. doi: 10.1364/ao.44.002058.

Abstract

Presented here are expressions for the P(N) approximation for light propagation in scattering media in the frequency domain. To elucidate parametric dependencies, the derivation uses normalization of the resulting expressions to either the total interaction coefficient or the reduced total interaction coefficient. For the latter case, a set of reduced phase function coefficients are introduced. Expression of the P(N) approximation as a conventional eigenvalue problem facilitates computation of the eigenvalues or attenuation coefficients. This approach is used to determine the attenuation coefficients in the asymptotic regime over the full values of the scattering albedo and reduced scattering albedo (0 to 1) and all positive values of the asymmetry factor (0 to 1). Frequency-domain measurements yield a sensitivity to turbid media optical properties for reduced scattering albedos as small as 0.2. P(N) calculations are used to assess the magnitude of errors associated with the P1 and P3 approximations over a range of scattering albedo, phase function, and modulation frequency.

摘要

这里给出了频域中光在散射介质中传播时P(N)近似的表达式。为了阐明参数依赖性,推导过程将所得表达式归一化为总相互作用系数或约化总相互作用系数。对于后一种情况,引入了一组约化相函数系数。将P(N)近似表示为传统的特征值问题便于计算特征值或衰减系数。该方法用于确定在散射反照率和约化散射反照率的全值(0到1)以及不对称因子的所有正值(0到1)范围内渐近区域的衰减系数。频域测量对低至0.2的约化散射反照率的浑浊介质光学性质具有敏感性。P(N)计算用于评估在一系列散射反照率、相函数和调制频率范围内与P1和P3近似相关的误差大小。

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