Curatu Costin, Curatu George, Rolland Jannick
Opt Express. 2006 Jan 9;14(1):138-47. doi: 10.1364/opex.14.000138.
Even after good calibration, the measurement accuracy of a Shack- Hartmann sensor can be affected by the fabrication and alignment tolerances of the wavefront sensing optical system. The shifts of the Shack-Hartmann spots caused by misalignments correspond to ray intercept errors on the detector that typically have to be converted into a meaningful input wavefront measurement error. This conversion cannot be directly obtained from a conventional tolerance analysis using optical design software, because of the intrinsic wavefront sampling by the lenslet array. The tolerancing method proposed in this paper solves the problem of converting conventional merit function degradation into input wavefront measurement error without employing a separate wavefront reconstruction algorithm. Using the proposed method, this investigation shows the effect of fabrication and misalignment errors on the accuracy of a calibrated Shack- Hartmann sensor, as a function of input wavefront vergence.
即使经过良好的校准,夏克-哈特曼传感器的测量精度仍可能受到波前传感光学系统的制造和对准公差的影响。由未对准引起的夏克-哈特曼光斑的偏移对应于探测器上的光线截距误差,这些误差通常必须转换为有意义的输入波前测量误差。由于微透镜阵列的固有波前采样,这种转换无法通过使用光学设计软件的传统公差分析直接获得。本文提出的公差方法解决了在不采用单独的波前重建算法的情况下将传统优值函数退化转换为输入波前测量误差的问题。使用所提出的方法,本研究展示了制造和未对准误差对校准后的夏克-哈特曼传感器精度的影响,该影响是输入波前聚散度的函数。