Leroux C E, Tzschachmann A, Dainty J C
Applied Optics Group, School of Physics, National University of Ireland, Galway.
Opt Express. 2010 Oct 11;18(21):21567-72. doi: 10.1364/OE.18.021567.
The measurement of the wavefront at the exit pupil of an optical system is a reliable method to investigate its imaging performance. It is sometimes necessary to compare the measurement obtained with a wavefront sensor to some known aberration function, which is for example given by a simulation or a gold standard measurement technique such as interferometry. For accurate measurement systems, the residual after direct subtraction of the two wavefronts is often partly due to a mismatch between coordinate systems. We present in this paper a method that uses the Zernike expansion of wavefronts to numerically cancel such small alignment errors. We use this algorithm to quantify the accuracy of a custom-built Shack-Hartmann wavefront sensor in the measurement of known aberration functions.
在光学系统的出瞳处测量波前是研究其成像性能的一种可靠方法。有时需要将波前传感器获得的测量结果与某个已知的像差函数进行比较,该像差函数例如由模拟或诸如干涉测量法这样的金标准测量技术给出。对于精确的测量系统,直接减去两个波前之后的残余部分通常部分归因于坐标系之间的不匹配。我们在本文中提出一种方法,该方法利用波前的泽尼克展开来数值消除此类小的对准误差。我们使用此算法来量化定制的夏克 - 哈特曼波前传感器在测量已知像差函数时的精度。