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Fractal dimension analysis of time-resolved diffusely scattered light from turbid samples

机译:混浊样品中时间分辨散射光的分形维数分析

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To improve quantification of optical properties in highly scattering and absorbing samples, time-correlated single photon counting measurements were analyzed using quantities related to the correlation dimension. Photon time-of-flight (TOF) distributions were collected in reflection and transmission optical configurations from samples made of cream and water-soluble dye (0 < mu(a) < 0.05 mm(-1); 100 < mu(s) < 250 mm(-1)). It was found that absorption and scattering properties of samples could be accurately quantified from information used to determine the correlation dimension. Scattering coefficients were estimated with less than 4% error for both optical configurations. Absorption estimates were made with CVs of 7.5 and 9.6% for reflection and transmission, respectively. Overall, fractal dimension analysis of TOF distributions provides a simple method of determining the optical properties of a sample.
机译:为了提高高度散射和吸收样品中光学性能的量化,使用与相关维数相关的量来分析时间相关的单光子计数测量值。从乳脂和水溶性染料(0 <μ(a)<0.05 mm(-1); 100 <μ(s)< 250毫米(-1))。发现可以从用于确定相关维数的信息中准确地量化样品的吸收和散射特性。两种光学配置的散射系数误差均小于4%。反射和透射的CV分别为7.5和9.6%的吸收率估计值。总的来说,TOF分布的分形维数分析提供了确定样品光学特性的简单方法。

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