Common Topological Charge of a Superposition of Several Identical Off-Axis Vortex Beams with an Arbitrary Circularly Symmetric Transverse Shape

A. A. Kovalev, V. V. Kotlyar, A. G. Nalimov
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Abstract

We investigate the common topological charge of a superposition of parallel identical vortex beams with an arbitrary transverse shape, either Laguerre–Gaussian beams or Bessel–Gaussian beams or some other vortex beams with rotationally symmetric intensity distribution. It is known that if all the beams in the superposition have the same phase then the common topological charge of the whole superposition equals the topological charge of each constituent beam n. We show that if the beams are located on a circle and their phases increase linearly along this circle so that the phase delay between the neighbor beams on the circle is 2πp/N with N being the number of beams and p being an integer number, then the common topological charge of the superposition is equal to n + p.

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具有任意圆对称横向形状的几个相同离轴涡旋光束叠加的公共拓扑电荷
本文研究了具有任意横向形状的平行相同涡旋光束叠加态的公共拓扑电荷,包括拉盖尔-高斯光束、贝塞尔-高斯光束和其他具有旋转对称强度分布的涡旋光束。我们知道,如果叠加态中的所有光束具有相同的相位,那么整个叠加态的公共拓扑电荷等于每个组成光束n的拓扑电荷。我们证明,如果光束位于一个圆上,并且它们的相位沿这个圆线性增加,使得圆上相邻光束之间的相位延迟为2πp/ n,其中n为光束数,p为整数,那么叠加态的公共拓扑电荷就等于n + p。
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来源期刊
CiteScore
1.50
自引率
11.10%
发文量
25
期刊介绍: The journal covers a wide range of issues in information optics such as optical memory, mechanisms for optical data recording and processing, photosensitive materials, optical, optoelectronic and holographic nanostructures, and many other related topics. Papers on memory systems using holographic and biological structures and concepts of brain operation are also included. The journal pays particular attention to research in the field of neural net systems that may lead to a new generation of computional technologies by endowing them with intelligence.
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