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Adaptive wavefront control using a nonlinear zernike filter

机译:使用非线性Zernike滤波器的自适应波前控制

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A conventional Zernike filter measures wavefront phase by superimposing the aberrated input beam with a phase-shifted version of its zero-order spectral component. The Fourier-domain phase-shifting is performed by a fixed phase-shifting dot on a glass slide in the focal plane of FOurier-transformint lens. Using an optically controlled phase spatial light modulator (SLM) instaead of the fixed phase-shifting dot, we have simulated and experimentally demonstrated a nonlinear Zernike filter robust to wavefront tilt misalignments. In the experiments, a liquid-crystal light valve (LCLV) was used as the phase SLM. The terminology "nonlinear" Zernike filter fers to the nonlinear filtering that takes place in the Fourier domain due to the phase change for field spectral components being propertiojnal to the spectral component intensities. Because the Zernike filter output intensity is directly related to input wavefront phase, a parallel, distributed feeback system can replace the wavefront reconstruction calculations normally required in adaptive-optic phase correction systems. Applications include high-resolution phase distortion suppression for atmospheric turbulence, optical phase microscopy, and compensation of aberrations in optical system components. A factor of eight improvement in Strehl ratio was obtained experimentally, and simulation results suggest that even better performance could be obtained byreplacing the LCLV with a more sophisticated optically-controlled phase SLM.
机译:常规的泽尼克过滤措施,通过与它的零级光谱分量的相移版本叠加像差输入光束波前相位。傅立叶域相移由固定相移点上在傅立叶transformint透镜的焦平面中的载玻片进行。使用光学控制相固定相移点的空间光调制器(SLM)instaead,我们已经模拟和实验证明非线性泽尼克滤波器健壮到波前倾斜失准。在实验中,液晶光阀(LCLV)用作相位SLM。的术语“非线性”泽尼克滤波器FERS到非线性滤波,发生在傅立叶域中由于对场的频谱分量是propertiojnal所述光谱分量强度的相位变化。因为泽尼克滤波器输出强度直接相关,输入波前相位,一个平行的,分布式系统留言反馈可以取代在自适应光学相位校正系统通常所需的波阵面重建的计算。应用包括用于大气湍流高分辨率相位失真抑制,光相位显微镜和光学系统组件的像差进行补偿。通过实验获得的在Strehl比8倍的改进的一个因素,以及仿真结果表明,可以得到具有更复杂的光控相位SLM byreplacing的LCLV甚至更好的性能。

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