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Analysis on the Misalignment Errors between Hartmann-Shack Sensor and 45-element Deformable Mirror

机译:Hartmann-Shack传感器和45元变形镜中未对准误差分析

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摘要

Aiming at 45-element adaptive optics system, the model of 45-element deformable mirror is truly built by COMSOL Multiphysics, and every actuator's influence function is acquired by finite element method. The process of this system correcting optical aberration is simulated by making use of procedure, and aiming for Strehl ratio of corrected diffraction facula, in the condition of existing different translation and rotation error between Hartmann-Shack sensor and deformable mirror, the system's correction ability for 3-20 Zernike polynomial wave aberration is analyzed. The computed result shows: the system's correction ability for 3-9 Zernike polynomial wave aberration is higher than that of 10-20 Zernike polynomial wave aberration. The correction ability for 3-20 Zernike polynomial wave aberration does not change with misalignment error changing. With rotation error between Hartmann-Shack sensor and deformable mirror increasing, the correction ability for 3-20 Zernike polynomial wave aberration gradually goes down, and with translation error increasing, the correction ability for 3-9 Zernike polynomial wave aberration gradually goes down, but the correction ability for 10-20 Zernike polynomial wave aberration behave up-and-down depression.
机译:针对45元件自适应光学系统,45元元可变形镜的型号通过COMSOL多发性真正构建,并且每种致动器的影响功能都是通过有限元方法来获取的。通过利用程序来模拟该系统校正光像差的过程,并旨在校正衍射Focula的斯特拉尔比,在现有不同的平移和旋转误差之间的条件下的Hartmann-Shack传感器和可变形镜之间,系统的校正能力分析了3-20个Zernike多项式波像波畸变。计算结果显示:3-9个Zernike多项式波像差的系统的校正能力高于10-20 Zernike多项式波像差。 3-20个Zernike多项式波像差的校正能力与未对准误差变化没有变化。随着Hartmann-Shack传感器和可变形镜之间的旋转误差增加,3-20个Zernike多项式波像差逐渐下降,并且随着翻译误差的增加,3-9个Zernike多项式波像差的校正能力逐渐下降,但是10-20个Zernike多项式波像畸变的校正能力表现出上下抑郁症。

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