Park Daniel J, Pradhan Prabhakar, Backman Vadim
Department of Biomedical Engineering, McCormick School of Engineering and Applied Science, Northwestern University, Evanston, IL 60208, USA.
Department of Chemistry, Weinberg College of Arts and Sciences, Northwestern University, Evanston, IL 60208, USA.
Int J Mod Phys B. 2016 Sep 20;30(23). doi: 10.1142/S0217979216501551. Epub 2016 Jul 29.
Reflection statistics have not been well studied for optical random media whose mean refractive indices do not match with the refractive indices of their surrounding media. Here, we theoretically study how this refractive index mismatch between a one-dimensional (1D) optical sample and its surrounding medium affects the reflection statistics in the weak disorder limit, when the fluctuation part of the refractive index (Δ) is much smaller than the mismatch as well as the mean refractive index of the sample (Δ ≪ 〈〉). In the theoretical derivation, we perform a detailed calculation that results in the analytical forms of the mean and standard deviation (STD) of the reflection coefficient in terms of disorder parameters ( [Formula: see text] and its correlation length ) in an index mismatched backscattering system. Particularly, the orders of disorder parameters in STD of the reflection coefficient for index mismatched systems are shown to be lower ((〈Δ〉 )) than that of the matched systems (〈Δ〉 ). By comparing STDs of the reflection coefficient values of index matched and mismatched systems, we show that reflection coefficient at the sample boundaries in index mismatched systems can enhance the signal of the STD to the "disorder parameters" of the reflection coefficient. In terms of biophotonics applications, this result can lead to potential techniques that effectively extract the sample disorder parameters by manipulating the index mismatched conditions. Potential applications of the technique for enhancement in sensitivity of cancer detection at the single cell level are also discussed.
对于平均折射率与其周围介质折射率不匹配的光学随机介质,反射统计尚未得到充分研究。在此,我们从理论上研究一维(1D)光学样本与其周围介质之间的这种折射率失配在弱无序极限下如何影响反射统计,此时折射率的波动部分(Δ)远小于失配以及样本的平均折射率(Δ≪〈〉)。在理论推导中,我们进行了详细计算,得出了在折射率失配后向散射系统中,反射系数的均值和标准差(STD)关于无序参数([公式:见正文]及其相关长度)的解析形式。特别地,折射率失配系统中反射系数标准差的无序参数阶数显示低于匹配系统(〈Δ〉)的阶数((〈Δ〉))。通过比较折射率匹配和失配系统的反射系数值的标准差,我们表明折射率失配系统中样本边界处的反射系数可以将标准差信号增强到反射系数的“无序参数”。就生物光子学应用而言,这一结果可导致通过操纵折射率失配条件有效提取样本无序参数的潜在技术。还讨论了该技术在提高单细胞水平癌症检测灵敏度方面的潜在应用。