Wu Han-Ling, Yan Hai-Xing, Li Xin-Yang, Li Shu-Shan
Institute of Mechanics, Chinese Academy of Sciences, Beijing 100190, China.
Opt Express. 2009 Aug 17;17(17):14649-64. doi: 10.1364/oe.17.014649.
A relative displacement between the grid points of optical fields and those of phase screens may occur in the simulation of light propagation through the turbulent atmosphere. A statistical interpolator is proposed to solve this problem in this paper. It is evaluated by the phase structure function and numerical experiments of light propagation through atmospheric turbulence with/without adaptive optics (AO) and it is also compared with the well-known linear interpolator under the same condition. Results of the phase structure function show that the statistical interpolator is more accurate in comparison with the linear one, especially in the high frequency region. More importantly, the long-exposure results of light propagation through the turbulent atmosphere with/without AO also show that the statistical interpolator is more accurate and reliable than the linear one.
在光通过湍流大气传播的模拟中,光场的网格点与相位屏的网格点之间可能会出现相对位移。本文提出了一种统计插值器来解决这个问题。通过相位结构函数以及有/无自适应光学(AO)情况下光通过大气湍流传播的数值实验对其进行评估,并且在相同条件下将其与著名的线性插值器进行比较。相位结构函数的结果表明,与线性插值器相比,统计插值器更精确,尤其是在高频区域。更重要的是,有/无AO情况下光通过湍流大气传播的长时间曝光结果也表明,统计插值器比线性插值器更精确、更可靠。