Ren Hongxi, Dong Bing
Opt Express. 2022 Mar 14;30(6):9562-9577. doi: 10.1364/OE.454901.
The deformable mirror (DM) in conventional model-based wavefront sensorless adaptive optics (WFSless AO) must be calibrated in advance by an additional WFS in order to precisely generate predetermined bias modes with known amplitudes. Although the WFS is unnecessary during correction, it will increase system complexity and may be unavailable in real applications. In this paper, the model-based WFSless AO algorithms, either for point-like or extended objects, are generalized to a unified form and the calibration problem comes down to the measurement of a Gram matrix. We proposed a novel self-calibration procedure to obtain the Gram matrix without using a WFS. The calibrated Gram matrix can be used directly for simultaneous correction if using the influence functions of DM as the bias modes, requiring N+1 images to correct N modes. Alternatively, orthogonal or gradient-orthogonal mirror modes obtained from the eigenvectors of the Gram matrix can be used as the modal basis to implement independent sequential correction that requires 2N images to correct N modes. Simulations and experiments have been done to verify the feasibility of proposed self-calibration and correction methods for both point-like and extended objects in a WFSless AO system.
在传统的基于模型的无波前传感器自适应光学系统(WFSless AO)中,可变形镜(DM)必须预先由额外的波前传感器进行校准,以便精确地生成具有已知幅度的预定偏置模式。尽管在校正过程中不需要波前传感器,但这会增加系统复杂性,并且在实际应用中可能无法使用。在本文中,针对点状或扩展目标的基于模型的无波前传感器自适应光学算法被推广到统一形式,校准问题归结为Gram矩阵的测量。我们提出了一种新颖的自校准程序,无需使用波前传感器即可获得Gram矩阵。如果将可变形镜的影响函数用作偏置模式,则校准后的Gram矩阵可直接用于同时校正,校正N个模式需要N + 1幅图像。或者,从Gram矩阵的特征向量获得的正交或梯度正交镜模式可作为模态基来实现独立顺序校正,校正N个模式需要2N幅图像。已经进行了模拟和实验,以验证所提出的自校准和校正方法在无波前传感器自适应光学系统中对点状和扩展目标的可行性。