多模态光纤远场强度和相位图控制结构的波前工程

arXiv: Optics Pub Date : 2020-09-02 DOI:10.1063/5.0044666
Liam Collard, F. Pisano, M. Pisanello, Antonio Balena, M. de Vittorio, F. Pisanello
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引用次数: 7

摘要

长期以来,自适应光学方法一直被用于在多模光纤(MMF)的输出端进行复杂的光整形,其具体目标是控制近场发射的光束。获得对其他发射特性的控制,包括远场模式和产生的光束的相位,将为mmf作为小型化的光束分裂、转向组件以及实现相位编码成像和传感开辟可能性。在本研究中,我们在MMF的输入处采用相位调制来产生具有可控角度和相位的多个低发散射线,展示了波前工程如何通过MMF实现波束控制和相位编码应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wavefront engineering for controlled structuring of far-field intensity and phase patterns from multimodal optical fibers
Adaptive optics methods have long been used to perform complex light shaping at the output of a multimode fiber (MMF), with the specific aim of controlling the emitted beam in the near-field. Gaining control of other emission properties, including the far-field pattern and the phase of the generated beam, would open up the possibility for MMFs to act as miniaturized beam splitting, steering components and to implement phase-encoded imaging and sensing. In this study, we employ phase modulation at the input of a MMF to generate multiple, low divergence rays with controlled angles and phase, showing how wavefront engineering can enable beam steering and phase-encoded applications through MMFs.
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