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首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Determination of particle size by using the angular distribution of backscattered light as measured with low-coherence interferometry
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Determination of particle size by using the angular distribution of backscattered light as measured with low-coherence interferometry

机译:通过使用低相干干涉法测量的反向散射光的角度分布来确定粒度

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摘要

We employ a novel interferometer to measure the angular distribution of light backscattered by a turbid medium. Through comparison of the measured data with the predictions of Mie theory, we are able to determine the size of the scatterers comprising the medium with subwavelength precision. As the technique is based on low-coherence interferometry, we are able to examine the evolution of the angular distribution of scattered light as it propagates into the medium. The effects of multiple scattering as a function of penetration depth in the medium are analyzed. We also present various considerations for extending this technique to determining structural information in biological tissues, such as the effects of a distribution of particle sizes and the need to average out speckle contributions.
机译:我们采用一种新颖的干涉仪来测量混浊介质向后散射光的角度分布。通过将测得的数据与Mie理论的预测值进行比较,我们能够确定具有亚波长精度的构成介质的散射体的大小。由于该技术基于低相干干涉技术,因此我们能够检查散射光传播到介质中时角分布的演变。分析了多次散射与介质中渗透深度的关系。我们还提出了各种考虑,以将该技术扩展到确定生物组织中的结构信息,例如粒径分布的影响以及平均散斑贡献的需求。

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