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Coherence and polarization of light propagating through scattering media and biological tissues

机译:通过散射介质和生物组织传播的光的相干和偏振

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The degree of polarization of light propagating through scattering media was measured as a function of the sample thickness in a Mach-Zehnder interferometer at a wavelength of lambda = 633 nm. For polystyrene microspheres of diameters 200, 430, and 940 nm, depolarization began to appear for thicknesses larger than 23, 19, and 15 scattering mean free paths (SMFP's), respectively, where the coherently detected scattered component dominates the ballistic component. For large particles (940 nm) the initial polarization survived partially in the scattering regime and progressively vanished up to the detection limit of our setup. This phenomenon was similarly observed in diluted blood from 12.5 to 280 SMFP's. Beyond this thickness the fluctuating parallel and crossed components of polarization became random. A dual-channel interferometer allowed us to detect simultaneously the low-frequency fluctuations of both polarized components through a few millimeters in liver tissue. (C) 1998 Optical Society of America OCIS codes: 040.2840, 170.3660, 170.4580, 260.5430. [References: 56]
机译:在λ= 633nm的波长下,在Mach-Zehnder干涉仪中,测量通过散射介质传播的光的偏振度与样品厚度的关系。对于直径为200、430和940 nm的聚苯乙烯微球,厚度分别大于23、19和15的散射平均自由程(SMFP)分别开始出现去极化,其中相干检测到的散射分量占弹道分量的主导。对于大颗粒(940 nm),初始极化在散射状态下部分保留,并逐渐消失到我们设置的检测极限。在从12.5到280 SMFP的稀释血液中也观察到了这种现象。超过此厚度,波动的平行和交叉极化分量变得随机。双通道干涉仪使我们能够同时检测到肝组织中几毫米内两种极化成分的低频波动。 (C)1998年美国光学学会OCIS代码:040.2840、170.3660、170.4580、260.5430。 [参考:56]

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