Wu Chensheng, Ko Jonathan, Rzasa John R, Paulson Daniel A, Davis Christopher C
Appl Opt. 2018 Mar 20;57(9):2337-2345. doi: 10.1364/AO.57.002337.
We find that ideas in optical image encryption can be very useful for adaptive optics in achieving simultaneous phase and amplitude shaping of a laser beam. An adaptive optics system with simultaneous phase and amplitude shaping ability is very desirable for atmospheric turbulence compensation. Atmospheric turbulence-induced beam distortions can jeopardize the effectiveness of optical power delivery for directed-energy systems and optical information delivery for free-space optical communication systems. In this paper, a prototype adaptive optics system is proposed based on a famous image encryption structure. The major change is to replace the two random phase plates at the input plane and Fourier plane of the encryption system, respectively, with two deformable mirrors that perform on-demand phase modulations. A Gaussian beam is used as an input to replace the conventional image input. We show through theory, simulation, and experiments that the slightly modified image encryption system can be used to achieve arbitrary phase and amplitude beam shaping within the limits of stroke range and influence function of the deformable mirrors. In application, the proposed technique can be used to perform mode conversion between optical beams, generate structured light signals for imaging and scanning, and compensate atmospheric turbulence-induced phase and amplitude beam distortions.
我们发现,光学图像加密中的理念对于自适应光学在实现激光束的相位和幅度同时整形方面非常有用。具有相位和幅度同时整形能力的自适应光学系统对于大气湍流补偿来说是非常理想的。大气湍流引起的光束畸变会危及定向能系统的光功率传输效率以及自由空间光通信系统的光信息传输效率。在本文中,基于一种著名的图像加密结构提出了一种自适应光学系统原型。主要的改变是分别用两个可进行按需相位调制的变形镜替换加密系统输入平面和傅里叶平面处的两个随机相位板。使用高斯光束作为输入来替代传统的图像输入。我们通过理论、仿真和实验表明,经过轻微修改的图像加密系统可用于在变形镜的行程范围和影响函数的限制内实现任意的相位和幅度光束整形。在应用中,所提出的技术可用于执行光束之间的模式转换、生成用于成像和扫描的结构化光信号以及补偿大气湍流引起的相位和幅度光束畸变。