优雅的修正贝塞尔高斯光束的传播特性

Chaohong Huang, Xiao Liu, Yanjing Li, Yutian Lin, Yangying Xu, Kunmin Yang, and Yongtong Zhao
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引用次数: 0

摘要

研究了一种传播方式为径向抛物线、强度衰减与远场传播距离成反比的光束。这种光束的初始复振幅为高斯函数乘以 m/2m/2 阶修正贝塞尔函数和拓扑电荷毫米螺旋相位因子的形式。这些光束传播解中的贝塞尔和高斯部分的参数与优雅的拉盖尔和赫米特高斯光束一样,都是复杂和对称的。因此,这些光束可称为优雅的修正贝塞尔-高斯(EMBG)光束。与贝塞尔光束和艾里光束等非衍射光束类似,EMBG 光束也因横向缓慢衰减的复振幅尾部而携带无限功率。EMBG 光束具有介于非衍射光束和有限功率光束之间的传播特性。非衍射光束永远不会传播功率,有限功率光束总是以线性方式发散,并在远场以平方反比定律传播功率,与之不同的是,EMBG 光束表现出远场抛物线传播方式,并以线性反比定律衰减功率。此外,EMBG 光束的总古伊相位仅为具有相同拓扑电荷的优雅拉盖尔-高斯光束的一半,并且其远场强度分布与初始平面上的束腰半径无关。EMBG 光束的传播和聚焦特性介于非衍射光束和有限功率光束之间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Propagation properties of elegant modified Bessel Gaussian beams
A kind of optical beam with a radially parabolic propagating manner and intensity decay inversely proportional to propagating distance in the far field is investigated. The initial complex amplitudes of this kind of beam have the form of a Gaussian function multiplied by a m/2-order modified Bessel function and a helical phase factor with topological charge m. The arguments for Bessel and Gauss parts in the propagating solutions of these beams are complex and symmetric as elegant Laguerre and Hermite Gaussian beams. As a result, the beams can be referred to as elegant modified Bessel Gauss (EMBG) beams. Similar to non-diffractive beams such as Bessel and Airy beams, the EMBG beams also carry infinite power due to a transversely slowly decaying tail of complex amplitude. The EMBG beams demonstrate intermediate propagating properties between non-diffractive and finite-power beams. Unlike non-diffractive beams that never spread their power and finite-power beams that always diverge in a linear manner and spread their power by inversely square law in the far field, the EMBG beams demonstrate a far-field parabolic propagating manner and decay their power by inversely linear law. In addition, the EMBG beams have total Gouy phase, which is only half of that of elegant Laguerre Gauss beams with the same topological charge, and have far-field intensity distributions regardless of the beam waist radius in the initial plane. The propagating and focusing properties of EMBG beams represent an intermediate status between the non-diffractive and finite-power beams.
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