Study on the propagation characteristics of coherent synthetic vortex beams in atmospheric turbulence

Zibo Kang, Fang Lu, Xiaohu Tang
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Abstract

For free space optical transmission, vortex beam can greatly improve the channel capacity, but it is easy to be affected by atmospheric turbulence. To solve this problem, in this paper, a radially aligned Gaussian beam array is loaded with a discrete vortex phase-coherent synthetic vortex beam. Based on the multi-phase screen numerical simulation method, the transmission of the synthetic vortex beam in Von Karman spectrum atmospheric turbulence is simulated, and the intensity distribution, drift and flicker characteristics of the beams under different turbulence intensity are studied. The effect of topological charge on light intensity flicker and beam drift is also discussed. The simulation results show that when the coherent vortex beam is transmitted in atmospheric turbulence, the turbulence makes the intensity distribution at the receiving end disordered and the phase distribution distorted. With the increase of turbulence intensity and transmission distance, the scintillation index and drift mean square error will increase, but when increasing to a certain extent, the scintillation index will tend to be flat. Under the same transmission conditions, the more topological charge of the beam, the better the transmission quality of the coherent synthetic vortex beam.
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大气湍流中相干合成涡束的传播特性研究
在自由空间光传输中,漩涡光束可以大大提高信道容量,但它容易受到大气湍流的影响。为解决这一问题,本文在径向排列的高斯光束阵列中加载了离散涡相相干合成涡束。基于多相屏数值模拟方法,模拟了合成涡旋光束在冯卡尔曼谱大气湍流中的传输,研究了不同湍流强度下光束的强度分布、漂移和闪烁特性。还讨论了拓扑电荷对光强闪烁和光束漂移的影响。模拟结果表明,相干涡旋光束在大气湍流中传输时,湍流会使接收端的光强分布紊乱,相位分布失真。随着湍流强度和传输距离的增加,闪烁指数和漂移均方误差会增大,但增大到一定程度后,闪烁指数会趋于平缓。在相同的传输条件下,光束的拓扑电荷越多,相干合成漩涡光束的传输质量越好。
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