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Controlling Light Transmission Through Highly Scattering Media Using Semi-Definite Programming as a Phase Retrieval Computation Method

机译:使用半定编程作为相位检索计算方法控制通过高散射介质的光传输

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摘要

Complex Semi-Definite Programming (SDP) is introduced as a novel approach to phase retrieval enabled control of monochromatic light transmission through highly scattering media. In a simple optical setup, a spatial light modulator is used to generate a random sequence of phase-modulated wavefronts, and the resulting intensity speckle patterns in the transmitted light are acquired on a camera. The SDP algorithm allows computation of the complex transmission matrix of the system from this sequence of intensity-only measurements, without need for a reference beam. Once the transmission matrix is determined, optimal wavefronts are computed that focus the incident beam to any position or sequence of positions on the far side of the scattering medium, without the need for any subsequent measurements or wavefront shaping iterations. The number of measurements required and the degree of enhancement of the intensity at focus is determined by the number of pixels controlled by the spatial light modulator.
机译:引入复杂半定编程(SDP)作为一种新颖的方法,可以对通过高散射介质进行的单色光传输进行相位检索控制。在简单的光学设置中,空间光调制器用于生成随机序列的相位调制波阵面,并且在相机上获取透射光中所得的强度斑点图案。 SDP算法允许根据此仅强度测量的序列来计算系统的复杂传输矩阵,而无需参考光束。一旦确定了传输矩阵,就可以计算出最佳的波前,将入射光束聚焦到散射介质远侧的任何位置或位置序列,而无需任何后续测量或波前整形迭代。所需的测量次数和聚焦强度的增强程度由空间光调制器控制的像素数确定。

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