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首页> 外文期刊>Journal of biomedical optics >Path-length-resolved measurements of multiple scattered photons in static and dynamic turbid media using phase-modulated low-coherence interferometry
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Path-length-resolved measurements of multiple scattered photons in static and dynamic turbid media using phase-modulated low-coherence interferometry

机译:使用相位调制低相干干涉法测量静态和动态浑浊介质中多个散射光子的路径长度分辨测量

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摘要

In optical Doppler measurements, the path length of the light is unknown. To facilitate quantitative measurements, we develop a phase-modulated Mach-Zehnder interferometer with separate fibers for illumination and detection. With this setup, path-length-resolved dynamic light scattering measurements of multiple scattered light in static and dynamic turbid media are performed. Optical path length distributions spanning a range from 0 to 11 mm are measured from the area under the phase modulation peak around the modulation frequency in the power spectrum. A Doppler-broadened phase modulation interference peak is observed that shows an increase in the average Doppler shift with optical path length, independent of absorption. Validation of the estimated path length distributions is done by measuring their deformation for increasing absorption and comparing these observations with predictions based on Lambert-Beer's law.
机译:在光学多普勒测量中,光的路径长度未知。为了便于定量测量,我们开发了一种相位调制的Mach-Zehnder干涉仪,该干涉仪带有单独的光纤用于照明和检测。使用此设置,可以对静态和动态浑浊介质中的多个散射光进行路径长度分辨的动态光散射测量。从功率谱中调制频率周围的相位调制峰值下的区域测量出范围从0到11 mm的光程长度分布。观察到多普勒增宽的相位调制干扰峰,该峰显示平均多普勒频移随光程长度的增加而独立于吸收。估计路径长度分布的验证是通过测量其变形以增加吸收并将这些观察结果与基于朗伯-比尔定律的预测进行比较来完成的。

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