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首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >OAM mode of the Hankel-Bessel vortex beam in weak to strong turbulent link of marine-atmosphere
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OAM mode of the Hankel-Bessel vortex beam in weak to strong turbulent link of marine-atmosphere

机译:Hankel-Bessel涡旋光束的OAM模式弱到了海洋气氛的强大动荡联系

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摘要

We study the turbulent effects of maritime atmosphere on the propagation of the orbital angular momentum (OAM) modes of a vortex beam. Based on the modified Rytov approximation, we model the effective marine-atmospheric spectrum and the normalized energy weight of the vortex modes of Hankel-Bessel beams in a paraxial marine turbulent channel. Our results show that the intensity of the signal vortex modes of Hankel-Bessel beams in a non- turbulence channel increases with increasing the quantum number of the OAM of vortex modes from one to higher. We can utilize OAM eigenstates of the Hankel-Bessel vortex beam to increase the channel capacity in optical communication of the remote link. The normalized energy weight of signal OAM modes increases and that of crosstalk OAM modes decreases from the worst to the best turbulent maritime climate. The normalized energy weight of signal OAM modes reduces with the increasing of the turbulent outer scale from 0.1m to 0.5m and the receiving diameter, but it increases with increasing the turbulent outer scale when the outer scale is greater than 0.5m. The effects of the inner scale on the normalized energy weight of OAM modes can be ignored. We can mitigate the effects of turbulence by the choice of the longer wavelength and smaller receiver aperture.
机译:我们研究了海洋气氛对涡流束的轨道角动量(OAM)模式的传播的动荡效果。基于改进的Rytov近似,我们在横周性船舶湍流通道中模拟了Hankel-Bessel梁的涡旋模式的涡流模式的归一化能量重量。我们的结果表明,由于从一个到更高的涡流模式的垃圾量的量子数量增加了非湍流通道中的Hankel-Bessel梁的信号涡流模式的强度增加。我们可以利用Hankel-Bessel Vortex波束的OAM eIgeNstates来增加远程链路的光通信中的信道容量。信号OAM模式的归一化能量重量增加,并且串扰OAM模式的变量从最坏的湍流海洋气候变化。信号OAM模式的归一化能量随着湍流外尺度的增加而减小0.1米至0.5米,并且接收直径增加,但是当外刻度大于0.5米时,随着湍流外刻度增加,它增加。内尺度对OAM模式的归一化能量的影响可以忽略。我们可以通过选择较长波长和更小的接收器孔来减轻湍流的影响。

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