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Structured light beams created through a multimode fiber via virtual Fourier filtering based on digital optical phase conjugation

机译:通过基于数字光学相位共轭通过虚拟傅里叶滤波通过多模光纤创建的结构化光束

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摘要

Digital optical phase conjugation (DOPC) is a newly developed technique in wavefront shaping to control light propagation through complex media. Currently, DOPC has been demonstrated for the reconstruction of two- and three-dimensional targets and enabled important applications in many areas. Nevertheless, the reconstruction results are only phase conjugated to the original input targets. Herein, we demonstrate that DOPC could be further developed for creating structured light beams through a multimode fiber (MMF). By applying annular filtering in the virtual Fourier domain of the acquired speckle field, we realize the creation of the quasi-Bessel and donut beams through the MMF. In principle, arbitrary amplitude and/or phase circular symmetry filtering could be performed in the Fourier domain, thus generating the corresponding point spread functions. We expect that the reported technique can be useful for super-resolution endoscopic imaging and optical manipulation through MMFs. (C) 2020 Optical Society of America.
机译:数字光学相位缀合(DOPC)是一种以波前塑形的新开发的技术,以通过复杂介质控制光传播。目前,DOPC已被证明重建二维和三维目标,并在许多领域启用了重要应用。然而,重建结果仅阶段与原始输入目标共轭。在此,我们证明可以进一步开发DOPC以通过多模光纤(MMF)产生结构化光束。通过在所获取的散斑场的虚拟傅里叶域中应用环形滤波,我们实现了通过MMF创建了准贝塞尔和甜甜圈梁。原则上,可以在傅立叶域中执行任意幅度和/或相位圆对称滤波,从而生成相应的点扩展功能。我们预期,报告的技术可用于通过MMF的超分辨率内窥镜成像和光学操作。 (c)2020美国光学学会。

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    《Applied optics》 |2020年第3期|共5页
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