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Photon path distribution and optical responses of turbid media: theoretical analysis based on the microscopic Beer-Lambert law.

机译:混浊介质的光子路径分布和光学响应:基于微观比尔-朗伯定律的理论分析。

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摘要

A concise theoretical treatment has been developed to describe the optical responses of a highly scattering inhomogeneous medium using functions of the photon path distribution (PPD). The treatment is based on the microscopic Beer-Lambert law and has been found to yield a complete set of optical responses by time- and frequency-domain measurements. The PPD is defined for possible photons having a total zigzag pathlength of l between the points of light input and detection. Such a distribution is independent of the absorption properties of the medium and can be uniquely determined for the medium under quantification. Therefore, the PPD can be calculated with an imaginary reference medium having the same optical properties as the medium under quantification except for the absence of absorption. One of the advantages of this method is that the optical responses, the total attenuation, the mean pathlength, etc are expressed by functions of the PPD and the absorption distribution.
机译:已经开发出一种简洁的理论方法来描述使用光子路径分布(PPD)函数的高度散射的非均匀介质的光学响应。该处理基于微观的比尔-朗伯定律,并已通过时域和频域测量产生了完整的光学响应。为可能的光子定义了PPD,这些光子在光输入和检测点之间的总之字形路径长度为l。这种分布不依赖于介质的吸收特性,并且可以针对定量的介质唯一地确定。因此,除了不存在吸收以外,可以使用具有与定量介质相同的光学性质的假想参考介质来计算PPD。该方法的优点之一是光学响应,总衰减,平均光程长度等由PPD和吸收分布的函数表示。

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