Gong Z, Wu Y, Wang Y, Wang C, Hou Z, Jiang Y, Jiang W, Wu X, Wang C, Xian H
Appl Opt. 1998 Jul 20;37(21):4549-52. doi: 10.1364/ao.37.004549.
An experimental study on phase compensation for turbulent effects with a 37-element adaptive optics system is performed in both a simulated turbulence cell and in a real atmosphere. The experimental results demonstrate that the compensated Strehl ratio S(0), which is influenced mainly by the deformable-mirror fitting error, has a functional form S(0) = exp[-kappa(d/r(0))(5/3)], where r(0) is Fried's coherence length and d is the average interval of the actuators on the deformable mirror. The fitting parameter kappa is 0.45. Numerical simulations are also performed with the experimental parameters. The numerical results are in agreement with data obtained in the experiment, which shows that the direct-tilt phase-reconstruction method used in our four-dimensional simulation code is reasonable.
利用一个37单元自适应光学系统对湍流效应进行相位补偿的实验研究在模拟湍流池和真实大气中均已开展。实验结果表明,主要受变形镜拟合误差影响的补偿斯特列尔比S(0)具有函数形式S(0)=exp[-κ(d/r(0))(5/3)],其中r(0)为弗里德相干长度,d为变形镜上致动器的平均间距。拟合参数κ为0.45。还利用实验参数进行了数值模拟。数值结果与实验获得的数据一致,这表明我们的四维模拟代码中使用的直接倾斜相位重建方法是合理的。