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传播的涡旋高斯光束在从弱到强的大气湍流中轨道角动量模式的变化。

Changes in orbital-angular-momentum modes of a propagated vortex Gaussian beam through weak-to-strong atmospheric turbulence.

作者信息

Chen Chunyi, Yang Huamin, Tong Shoufeng, Lou Yan

出版信息

Opt Express. 2016 Apr 4;24(7):6959-75. doi: 10.1364/OE.24.006959.

Abstract

The radial average-power distribution and normalized average power of orbital-angular-momentum (OAM) modes in a vortex Gaussian beam after passing through weak-to-strong atmospheric turbulence are theoretically formulated. Based on numerical calculations, the role of the intrinsic mode index, initial beam radius and turbulence strength in OAM-mode variations of a propagated vortex Gaussian beam is explored, and the validity of the pure-phase-perturbation approximation employed in existing theoretical studies is examined. Comparison between turbulence-induced OAM-mode scrambling of vortex Gaussian beams and that of either Laguerre-Gaussian (LG) beams or pure vortex beams has been made. Analysis shows that the normalized average power of OAM modes changes with increasing receiver-aperture size until it approaches a nearly stable value. For a receiver-aperture size of practical interest, OAM-mode scrambling is severer with a larger mode index or smaller initial beam radius besides stronger turbulence. Under moderate-to-strong turbulence condition, for two symmetrically-neighboring extrinsic OAM modes, the normalized average power of the one with an index closer to zero may be greater than that of the other one. The validity of the pure-phase-perturbation approximation is determined by the intrinsic mode index, initial beam radius and turbulence strength. It makes sense to jointly control the amplitude and phase of a fundamental Gaussian beam for producing an OAM-carrying beam.

摘要

从理论上推导了涡旋高斯光束在经过由弱到强的大气湍流后,其轨道角动量(OAM)模式的径向平均功率分布和归一化平均功率。基于数值计算,探讨了本征模式指数、初始光束半径和湍流强度在传播的涡旋高斯光束OAM模式变化中的作用,并检验了现有理论研究中采用的纯相位扰动近似的有效性。对涡旋高斯光束与拉盖尔 - 高斯(LG)光束或纯涡旋光束的湍流诱导OAM模式扰动作了比较。分析表明,OAM模式的归一化平均功率随着接收器孔径尺寸的增加而变化,直至接近一个近似稳定的值。对于实际感兴趣的接收器孔径尺寸,除了更强的湍流外,OAM模式扰动在模式指数较大或初始光束半径较小时更为严重。在中等到强湍流条件下,对于两个对称相邻的外在OAM模式,指数更接近零的那个模式的归一化平均功率可能大于另一个模式。纯相位扰动近似的有效性由本征模式指数、初始光束半径和湍流强度决定。联合控制基模高斯光束的幅度和相位以产生携带OAM的光束是有意义的。

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