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Coherent inverse scattering via transmission matrices: Efficient phase retrieval algorithms and a public dataset

机译:通过传输矩阵的相干逆散射:有效的相位检索算法和公共数据集

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A transmission matrix describes the input-output relationship of a complex wavefront as it passes through/reflects off a multiple-scattering medium, such as frosted glass or a painted wall. Knowing a medium's transmission matrix enables one to image through the medium, send signals through the medium, or even use the medium as a lens. The double phase retrieval method is a recently proposed technique to learn a medium's transmission matrix that avoids difficult-to-capture interferometric measurements. Unfortunately, to perform high resolution imaging, existing double phase retrieval methods require (1) a large number of measurements and (2) an unreasonable amount of computation. In this work we focus on the latter of these two problems and reduce computation times with two distinct methods: First, we develop a new phase retrieval algorithm that is significantly faster than existing methods, especially when used with an amplitude-only spatial light modulator (SLM). Second, we calibrate the system using a phase-only SLM, rather than an amplitude-only SLM which was used in previous double phase retrieval experiments. This seemingly trivial change enables us to use a far faster class of phase retrieval algorithms. As a result of these advances, we achieve a 100x reduction in computation times, thereby allowing us to image through scattering media at state-of-the-art resolutions. In addition to these advances, we also release the first publicly available transmission matrix dataset. This contribution will enable phase retrieval researchers to apply their algorithms to real data. Of particular interest to this community, our measurement vectors are naturally i.i.d. subgaussian, i.e., no coded diffraction pattern is required.
机译:传输矩阵描述了复杂波前穿过/反射多重散射介质(如毛玻璃或粉刷墙壁)时的输入-输出关系。知道了介质的传输矩阵后,就可以通过介质进行成像,通过介质发送信号,甚至可以将介质用作镜头。双相检索方法是最近提出的一种学习介质传输矩阵的技术,该矩阵避免了难以捕获的干涉测量。不幸的是,为了执行高分辨率成像,现有的双相检索方法需要(1)大量测量和(2)不合理的计算量。在这项工作中,我们着眼于这两个问题中的后一个问题,并通过两种不同的方法来减少计算时间:首先,我们开发了一种新的相位检索算法,该算法明显比现有方法快,尤其是与仅振幅空间光调制器一起使用时( SLM)。其次,我们使用仅相位SLM而不是先前的双相检索实验中使用的仅幅度SLM来校准系统。这种看似微不足道的变化使我们能够使用更快的一类相位检索算法。这些进步的结果是,我们将计算时间减少了100倍,从而使我们能够以最新的分辨率通过散射介质成像。除了这些进步之外,我们还发布了第一个公开可用的传输矩阵数据集。这一贡献将使阶段检索研究人员能够将其算法应用于真实数据。该社区特别感兴趣的是,我们的测量向量自然是i.i.d。次高斯的,即不需要编码的衍射图。

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