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通过传输矩阵反演在散射介质中聚焦光。

Focusing light through scattering media by transmission matrix inversion.

作者信息

Xu Jian, Ruan Haowen, Liu Yan, Zhou Haojiang, Yang Changhuei

出版信息

Opt Express. 2017 Oct 30;25(22):27234-27246. doi: 10.1364/OE.25.027234.

Abstract

Focusing light through scattering media has broad applications in optical imaging, manipulation and therapy. The contrast of the focus can be quantified by peak-to-background intensity ratio (PBR). Here, we theoretically and numerically show that by using a transmission matrix inversion method to achieve focusing, within a limited field of view and under a low noise condition in transmission matrix measurements, the PBR of the focus can be higher than that achieved by conventional methods such as optical phase conjugation or feedback-based wavefront shaping. Experimentally, using a phase-modulation spatial light modulator, we increase the PBR by 66% over that achieved by conventional methods based on phase conjugation. In addition, we demonstrate that, within a limited field of view and under a low noise condition in transmission matrix measurements, our matrix inversion method enables light focusing to multiple foci with greater fidelity than those of conventional methods.

摘要

通过散射介质聚焦光在光学成像、操控和治疗等方面有着广泛应用。焦点的对比度可以用峰背强度比(PBR)来量化。在此,我们通过理论和数值模拟表明,在传输矩阵测量中,利用传输矩阵求逆方法实现聚焦,在有限视场和低噪声条件下,焦点的PBR可高于诸如光学相位共轭或基于反馈的波前整形等传统方法所达到的PBR。在实验中,使用相位调制空间光调制器,我们使PBR比基于相位共轭的传统方法提高了66%。此外,我们证明,在传输矩阵测量的有限视场和低噪声条件下,我们的矩阵求逆方法能够实现比传统方法更精确的多焦点光聚焦。

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