Yang Chunyong, Xu Chuang, Ni Wenjun, Gan Yu, Hou Jin, Chen Shaoping
Opt Express. 2017 Oct 16;25(21):25612-25624. doi: 10.1364/OE.25.025612.
A novel scheme is proposed to mitigate the atmospheric turbulence effect in free space optical (FSO) communication employing orbital angular momentum (OAM) multiplexing. In this scheme, the Gaussian beam is used as an auxiliary light with a common-path to obtain the distortion information caused by atmospheric turbulence. After turbulence, the heterodyne coherent detection technology is demonstrated to realize the turbulence mitigation. With the same turbulence distortion, the OAM beams and the Gaussian beam are respectively utilized as the signal light and the local oscillation light. Then the turbulence distortion is counteracted to a large extent. Meanwhile, a phase matching method is proposed to select the specific OAM mode. The discrimination between the neighboring OAM modes is obviously improved by detecting the output photocurrent. Moreover, two methods of beam size adjustment have been analyzed to achieve better performance for turbulence mitigation. Numerical results show that the system bit error rate (BER) can reach 10 under strong turbulence in simulation situation.
提出了一种新颖的方案,以减轻采用轨道角动量(OAM)复用的自由空间光(FSO)通信中的大气湍流效应。在该方案中,高斯光束用作具有公共路径的辅助光,以获取由大气湍流引起的失真信息。经过湍流后,演示了外差相干检测技术以实现湍流减轻。在相同的湍流失真情况下,将OAM光束和高斯光束分别用作信号光和本地振荡光。然后,在很大程度上抵消了湍流失真。同时,提出了一种相位匹配方法来选择特定的OAM模式。通过检测输出光电流,相邻OAM模式之间的辨别力得到了明显提高。此外,还分析了两种光束尺寸调整方法,以实现更好的湍流减轻性能。数值结果表明,在模拟情况下,强湍流条件下系统误码率(BER)可达到10 。