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Beam wander relieved orbital angular momentum communication in turbulent atmosphere using Bessel beams

机译:光束漂移在使用贝塞尔梁的湍流大气中缓解了轨道角动量通信

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Optical beam wander is one of the most important issues for free-space optical (FSO) communication. We theoretically derive a beam wander model for Bessel beams propagating in turbulent atmosphere. The calculated beam wander of high order Bessel beams with different turbulence strengths are consistent with experimental measurements. Both theoretical and experimental results reveal that high order Bessel beams are less influenced by the turbulent atmosphere. We also demonstrate the Bessel beams based orbital angular momentum (OAM) multiplexing/demultiplexing in FSO communication with atmospheric turbulence. Under the same atmospheric turbulence condition, the bit error rates of transmitted signals carried by high order Bessel beams show smaller values and fluctuations, which indicates that the high order Bessel beams have an advantage of mitigating the beam wander in OAM multiplexing FSO communication.
机译:光束漂移是可用空间光学(FSO)通信最重要的问题之一。理论上我们从湍流大气中传播的贝塞尔梁射出光束漫游模型。具有不同湍流强度的高阶贝塞尔光束的计算梁漂移与实验测量一致。理论和实验结果都表明,高阶贝塞尔梁受到湍流气氛的影响较小。我们还展示了基于轨道梁的轨道角动量(OAM)在与大气湍流的FSO通信中复用/解复用。在相同的大气湍流条件下,由高阶贝塞尔光束承载的透射信号的误码率示出了较小的值和波动,这表明高阶贝塞尔光束具有减轻OAM复用FSO通信中的光束漂移的优点。

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