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Universal sensitivity of speckle intensity correlations to wavefront change in light diffusers

机译:散斑强度相关性对光扩散器波前变化的普遍敏感性

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摘要

Here, we present a concept based on the realization that a complex medium can be used as a simple interferometer. Changes in the wavefront of an incident coherent beam can be retrieved by analyzing changes in speckle patterns when the beam passes through a light diffuser. We demonstrate that the spatial intensity correlations of the speckle patterns are independent of the light diffusers, and are solely determined by the phase changes of an incident beam. With numerical simulations using the random matrix theory, and an experimental pressure-driven wavefront-deforming setup using a microfluidic channel, we theoretically and experimentally confirm the universal sensitivity of speckle intensity correlations, which is attributed to the conservation of optical field correlation despite multiple light scattering. This work demonstrates that a light diffuser works as a simple interferometer, and presents opportunities to retrieve phase information of optical fields with a compact scattering layer in various applications in metrology, analytical chemistry, and biomedicine.
机译:在这里,我们提出一个基于复杂介质可以用作简单干涉仪的认识的概念。入射相干光束的波前变化可以通过分析光束通过光扩散器时散斑图的变化来获取。我们证明散斑图案的空间强度相关性与光扩散器无关,并且仅由入射光束的相位变化确定。通过使用随机矩阵理论的数值模拟以及使用微流体通道的实验压力驱动波阵面变形设置,我们在理论上和实验上确认了斑点强度相关性的通用灵敏度,这归因于尽管存在多个光,但仍保持了光场相关性散射。这项工作表明光扩散器可以用作简单的干涉仪,并为在计量,分析化学和生物医学的各种应用中利用紧凑的散射层提供了检索光场的相位信息的机会。

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