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Quantification of Optical Doppler broadening and optical path lengths of multiply scattered light with phase modulated low coherence interferometry

机译:相位调制低相干干涉法定量测量多散射光的光学多普勒展宽和光程长度

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摘要

We show experimental validation of a novel technique to measure optical path length distributions and path length resolved Doppler broadening in turbid media for different reduced scattering coefficients and anisotropies. The technique involves a phase modulated low coherence Mach-Zehnder interferometer, with separate fibers for illumination and detection. Water suspensions of Polystyrene microspheres with high scattering and low absorption levels are used as calibrated scattering phantoms. The path length dependent diffusion broadening or Doppler broadening of scattered light is shown to agree with Diffusive Wave Spectroscopy within 5%. The optical path lengths are determined experimentally from the zero order moment of the phase modulation peak around the modulation frequency in the power spectrum and the results are validated with Monte Carlo simulations.
机译:我们显示了一种新颖的技术的实验验证,该技术可以测量浊度介质中不同减小的散射系数和各向异性的光程长度分布和分辨多普勒加宽的光程长度。该技术涉及一种相位调制的低相干马赫曾德尔干涉仪,具有用于照明和检测的单独光纤。具有高散射和低吸收水平的聚苯乙烯微球的水悬浮液被用作校准的散射体模。散射光的路径长度相关的扩散展宽或多普勒展宽显示与5%的扩散波谱一致。从功率谱中调制频率附近的相位调制峰的零阶矩通过实验确定光程长度,并通过蒙特卡洛仿真验证了结果。

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