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Measurement of interactive matrix and flat-surface calibration of OKO 109-channel deformable mirror using ZYGO-GPI interferometer

机译:使用Zygo-GPI干涉仪测量OKO 109通道可变形镜的交互式矩阵和平坦表面校准

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Deformable mirror (DM) is the most main wavefront corrector in adaptive optics, which can be used to compensate optical aberrations through changing the reflective mirror's surface frequently. However, a commercial piezoelectric DM can't have an ideal flat initial surface under zero-voltage condition due to limitation of thin mirror fabrication and support structure of actuators behind of mirror. Optical aberrations generated by this initial distortion will seriously attenuate the performance of DM's close-loop control, so a flat-surface calibration of mirror needs to be carried out before DM properly correct optical aberrations. In order to properly control the optical figure of the DM we have to obtain an interactive matrix which is the response of optical surface to the DM actuator's stroke. We measured a serious of surface phase data of OKO 109-channel DM through self-collimation using a ZYGO-GPI interferometer directly, then construct the interactive matrix by zonal and modal methods. After several close-loop iterations, the initial RMS surface error of OKO 109-channel deformable mirror. 1.506 λ has been remarkably reduced to 0.145 λ .
机译:可变形镜(DM)是自适应光学器件中最主波前校正器,可用于通过经常改变反射镜的表面来补偿光学像差。然而,由于镜子后面的致动器的致动器的限制,商业压电DM不能在零电压条件下具有理想的扁平初始表面。由该初始失真产生的光学像差将认真衰减DM闭环控制的性能,因此需要在DM正确校正光学像差之前进行镜子的平坦表面校准。为了正确控制DM的光学图,我们必须获得一个交互矩阵,这是光学表面与DM执行器的行程的响应。我们通过直接使用Zygo-GPI干涉仪通过自组合测量OKO 109沟道DM的严重表面数据,然后通过Zonal和模态方法构造交互式矩阵。经过几个闭环迭代,OKO 109通道可变形镜的初始RMS表面误差。 1.506λ已显着降低至0.145λ。

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