Modeling and design of square magnetic fluid deformable mirrors

Zhu Zhang, Zhizheng Wu, Xinxiang Jiang, Xiang-hui Kong
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Abstract

Adaptive Optical (AO) systems are used in various application areas to enhance the performance of optical systems. Wavefront correctors play a very important role in the performance of the AO system. Magnetic fluid based liquid deformable mirror is a novel type of wavefront correctors and its reflective surface can be deformed using a locally applied magnetic field generated by an array of underneath actuators. Compared with the conventional deformable mirror, the magnetic fluid deformable mirror (MFDM) has the advantages of continuous and smooth mirror surface, large shape deformation, low manufacture cost and easy extension. In this paper, a MFDM with a square array of actuators is proposed for the wavefront control of laser beams. First, the model of the proposed MFDM is derived in Cartesian Coordinates. Then, the structure and parameters of the MFDM are optimally designed based on the derived model, and the performance of the MFDM is simulated using the MATLAB and COMSOL Multiphysics software. Finally, an AO system with a fabricated prototype of square MFDM is setup to test the performance of MFDM on the wavefront control of laser beams, and the experimental results illustrate the desirable performance of the proposed MFDM.
方形磁流体变形镜的建模与设计
为了提高光学系统的性能,自适应光学系统被广泛应用于各个领域。波前校正器对AO系统的性能起着非常重要的作用。基于磁流体的液体变形镜是一种新型的波前校正器,它的反射面可以利用下方阵列致动器产生的局部外加磁场进行变形。与传统可变形镜相比,磁流体可变形镜具有镜面连续光滑、形状变形大、制造成本低、易于扩展等优点。本文提出了一种具有方阵执行器的MFDM,用于激光光束的波前控制。首先,在笛卡尔坐标系下推导了该模型。然后,基于所建立的模型对MFDM的结构和参数进行了优化设计,并利用MATLAB和COMSOL Multiphysics软件对MFDM的性能进行了仿真。最后,利用自制的方形MFDM原型建立了AO系统,测试了MFDM对激光束波前控制的性能,实验结果表明了所提出的MFDM的良好性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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