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Curvature wavefront sensing based on a single defocused image and intensity compensation

机译:基于单个散焦图像和强度补偿的曲率波前感测

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Curvature wavefront sensing usually requires the measurement of two defocused images at equal distances before and after the focus. In this paper, a new wavefront recovery algorithm based on only one defocused image is proposed. This algorithm contains the following four steps: response matrix calculation, establishment of intensity distribution equations, Zernike coefficients solution derived from the least squares method, and defocused image compensation with the solved Zernike coefficients. The performance of the algorithm in a large obscuration ratio and fast focal ratio optical system on axis and the edge of the field of view (FOV) is examined. Two optical systems of the Hubble telescope and a modified Paul-Baker telescope are employed to test the algorithm. The simulations show that the proposed algorithm outperforms in structural simplicity, and applications are expected in the wavefront recovery of the extreme environment (i.e., in space and the Antarctic). (C) 2016 Optical Society of America
机译:曲率波前感测通常需要在聚焦前后以相等的距离测量两个散焦图像。提出了一种仅基于一个散焦图像的波前恢复算法。该算法包含以下四个步骤:响应矩阵计算,强度分布方程的建立,从最小二乘法得出的Zernike系数解以及使用已求解的Zernike系数进行散焦图像补偿。考察了算法在轴和视场边缘(FOV)上大遮盖率和快速聚焦比光学系统中的性能。哈勃望远镜和改良的Paul-Baker望远镜的两个光学系统用于测试算法。仿真结果表明,所提出的算法在结构简单性方面优于传统算法,并且有望在极端环境(即在太空和南极)的波前恢复中得到应用。 (C)2016美国眼镜学会

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