具有任意拓扑电荷跳变的反常多坡道分数涡旋光束

arXiv: Optics Pub Date : 2020-08-21 DOI:10.1063/5.0028490
Jun Zeng, Hao Zhang, Zhiheng Xu, Chengliang Zhao, Y. Cai, G. Gbur
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引用次数: 7

摘要

传统的分数涡旋光束是众所周知的“跳跃”光束:即当源的有效拓扑电荷超过半整数值时,它们的净拓扑电荷以单位跳变。在这里,我们提出了一种异常多斜坡分数涡(AMRFV)光束。与传统的分数涡旋光束不同,AMRFV光束可以设计成在源电荷的任意临界阈值处具有任意拓扑电荷跳跃。我们通过对一些AMRFV波束的仿真,给出了基于相位奇点演化的多跳特性的清晰解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Anomalous multi-ramp fractional vortex beams with arbitrary topological charge jumps
Traditional fractional vortex beams are well-known "jump" beams: that is, their net topological charge jumps by unity as the effective topological charge of the source passes a half-integer value. Here, we propose an anomalous multi-ramp fractional vortex (AMRFV) beam. Unlike the traditional fractional vortex beams, an AMRFV beam can be designed to have arbitrary jumps in topological charge at any critical threshold of the source charge. We walk through some examples of AMRFV beams using simulations and present a clear interpretation of the multi-jump characteristic based on the evolution of phase singularities.
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