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优化内相参考以塑造多模光纤的输出。

Optimizing the internal phase reference to shape the output of a multimode optical fiber.

机构信息

Istituto Italiano di Tecnologia, Center for Biomolecular Nanotechnologies, Arnesano, Italy.

RAISE Ecosystem, Genova, Italy.

出版信息

PLoS One. 2023 Sep 8;18(9):e0290300. doi: 10.1371/journal.pone.0290300. eCollection 2023.

Abstract

Pre-shaping light to achieve desired amplitude distributions at the tip of a multimode fiber (MMF) has emerged as a powerful method allowing a wide range of imaging techniques to be implemented at the distal facet. Such techniques rely on measuring the transmission matrix of the optically turbid waveguide which scrambles the coherent input light into an effectively random speckle pattern. Typically, this is done by measuring the interferogram between the output speckle and a reference beam. In recent years, an optical setup where the reference beam passes through the MMF has become an attractive configuration because of the high interferometric stability of the common optical path. However, the merits and drawbacks of an internal reference beam remain controversial. The measurement of the transmission matrix is known to depend on the choice of internal reference and has been reported to result in "blind spots" due to phase singularities of the reference beam. Here, we describe how the focussing efficiency of the calibration can be increased by several percent by optimising the choice of internal reference beam.

摘要

预塑形光以在多模光纤(MMF)的尖端实现所需的振幅分布,已成为一种强大的方法,允许在远端面实施广泛的成像技术。这些技术依赖于测量光学混浊波导的传输矩阵,该矩阵将相干输入光混频成有效的随机散斑图案。通常,这是通过测量输出散斑和参考光束之间的干涉图来完成的。近年来,由于公共光路的干涉稳定性高,内部参考光束通过 MMF 的光学设置已成为一种有吸引力的配置。然而,内部参考光束的优点和缺点仍然存在争议。据报道,传输矩阵的测量取决于内部参考的选择,并由于参考光束的相位奇点而导致“盲点”。在这里,我们描述了如何通过优化内部参考光束的选择将校准的聚焦效率提高几个百分点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2457/10490902/668a1504cfbe/pone.0290300.g001.jpg

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