Correlating light fields through disordered media across multiple degrees of freedom

Louisiane Devaud, Bernhard Rauer, Simon Mauras, Stefan Rotter, Sylvain Gigan
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引用次数: 0

Abstract

Speckle patterns are inherent features of coherent light propagation through complex media. As a result of interference, they are sensitive to multiple experimental parameters such as the configuration of disorder or the propagating wavelength. Recent developments in wavefront shaping have made it possible to control speckle pattern statistics and correlations, for example using the concept of the transmission matrix. In this article, we address the problem of correlating scattered fields across multiple degrees of freedom. We highlight the common points between the specific techniques already demonstrated, and we propose a general framework based on the singular value decomposition of a linear combination of multiple transmission matrices. Following analytical predictions, we experimentally illustrate the technique on spectral and temporal correlations, and we show that both the amplitude and the phase of the field correlations can be tuned. Our work opens up new perspectives in speckle correlation manipulation, with potential applications in coherent control.

Abstract Image

多自由度无序介质中的相关光场
斑点模式是相干光在复杂介质中传播的固有特征。由于存在干涉,它们对多种实验参数(如无序配置或传播波长)非常敏感。波前整形技术的最新发展使得控制斑点图案统计和相关性成为可能,例如使用透射矩阵的概念。在本文中,我们将讨论跨多个自由度的散射场相关性问题。我们强调了已展示的具体技术之间的共同点,并提出了一个基于多个传输矩阵线性组合的奇异值分解的通用框架。根据分析预测,我们通过实验说明了频谱和时间相关性技术,并表明场相关性的振幅和相位都可以调整。我们的研究开辟了斑点相关操作的新视角,并有望应用于相干控制领域。
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CiteScore
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