Ren Yongxiong, Xie Guodong, Huang Hao, Li Long, Ahmed Nisar, Yan Yan, Lavery Martin P J, Bock Robert, Tur Moshe, Neifeld Mark A, Boyd Robert W, Shapiro Jeffrey H, Willner Alan E
Opt Lett. 2015 May 15;40(10):2249-52. doi: 10.1364/OL.40.002249.
We investigate the sensing of a data-carrying Gaussian beacon on a separate wavelength as a means to provide the information necessary to compensate for the effects of atmospheric turbulence on orbital angular momentum (OAM) and polarization-multiplexed beams in a free-space optical link. The influence of the Gaussian beacon's wavelength on the compensation of the OAM beams at 1560 nm is experimentally studied. It is found that the compensation performance degrades slowly with the increase in the beacon's wavelength offset, in the 1520-1590 nm band, from the OAM beams. Using this scheme, we experimentally demonstrate a 1 Tbit/s OAM and polarization-multiplexed link through emulated dynamic turbulence with a data-carrying beacon at 1550 nm. The experimental results show that the turbulence effects on all 10 data channels, each carrying a 100 Gbit/s signal, are mitigated efficiently, and the power penalties after compensation are below 5.9 dB for all channels. The results of our work might be helpful for the future implementation of a high-capacity OAM, polarization and wavelength-multiplexed free-space optical link that is affected by atmospheric turbulence.
我们研究了在单独波长上对携带数据的高斯信标的传感,以此作为一种手段来提供必要信息,以补偿大气湍流对自由空间光链路中轨道角动量(OAM)和偏振复用光束的影响。实验研究了高斯信标波长对1560nm处OAM光束补偿的影响。研究发现,在1520 - 1590nm波段内,随着信标波长与OAM光束的波长偏移增加,补偿性能会缓慢下降。利用该方案,我们通过在1550nm处携带数据的信标模拟动态湍流,实验演示了1Tbit/s的OAM和偏振复用链路。实验结果表明,湍流对所有10个数据通道(每个通道携带100Gbit/s信号)的影响都得到了有效缓解,补偿后的功率代价在所有通道中均低于5.9dB。我们的工作结果可能有助于未来实现受大气湍流影响的高容量OAM、偏振和波长复用自由空间光链路。