Zhong Zheqiang, Zhang Xiang, Zhang Bin, Yuan Xiao
Opt Express. 2022 Jul 4;30(14):24421-24430. doi: 10.1364/OE.458911.
We propose an approach against the turbulence-induced degradation by using laser beam with self-rotating wavefront. Such laser beam, generated by the coherent combination of vortex beams with different helical charges and central angular frequencies, can introduce coupling of its wavefront in spatial and temporal domain, that is, periodic wavefront rotation. When the wavefront rotation is faster than the airflow, the laser beam can travel through the inhomogeneity and anisotropy of air in the azimuthal direction within the time interval of airflow. The wavefront distortion caused by the turbulent atmosphere is therefore rotated and gradually smoothed as the laser beam travels. After the laser propagating through the turbulent atmosphere, the total wavefront distortion becomes centrosymmetric with lower peak-to-valley (PV) value. Such smoothed wavefront distortion can dramatically eliminate the turbulence-induced degradation of laser beams, especially beam centroid drift. We believe that this approach can lead to new trend in remote sensing, free-space optical communication, lidar, etc.
我们提出了一种利用具有自旋转波前的激光束来对抗湍流引起的退化的方法。这种由具有不同螺旋电荷和中心角频率的涡旋光束相干组合产生的激光束,可以在空间和时间域中引入其波前的耦合,即周期性波前旋转。当波前旋转速度比气流快时,激光束可以在气流的时间间隔内在方位方向上穿过空气的不均匀性和各向异性。因此,由湍流大气引起的波前畸变随着激光束的传播而旋转并逐渐平滑。在激光穿过湍流大气后,总的波前畸变变得中心对称,峰谷(PV)值更低。这种平滑的波前畸变可以显著消除湍流引起的激光束退化,特别是光束质心漂移。我们相信这种方法可以引领遥感、自由空间光通信、激光雷达等领域的新趋势。