Wilson R G
Appl Opt. 1975 Sep 1;14(9):2286-97. doi: 10.1364/AO.14.002286.
The diffraction theory of the Foucault test provides an integral formula expressing the complex amplitude and irradiance distribution in the Foucault pattern of a test mirror (lens) as a function of wavefront error. Recent literature presents methods of inverting this formula to express wavefront error in terms of irradiance in the Foucault pattern. The present paper describes a study in which the inversion formulation as applied to photometric Foucault-test measurements on a nearly diffraction-limited mirror to determinewavefront errors for direct comparison with ones determined from scatter-plate interferometer measurements. The results affirm the practicability of the Foucault test for quantitative wavefront analysis of very small errors, and they reveal the fallacy of the prevalent belief that the test is limited to qualitative use only. Implications of the results with regard to optical testing and the potential use of the Foucault test for wavefront analysis in orbital space telescopes are discussed.
傅科测试的衍射理论提供了一个积分公式,该公式将测试镜(透镜)的傅科图样中的复振幅和辐照度分布表示为波前误差的函数。最近的文献提出了一些方法来反转这个公式,以便根据傅科图样中的辐照度来表示波前误差。本文描述了一项研究,其中将反转公式应用于对几乎衍射极限镜进行的光度傅科测试测量,以确定波前误差,以便与散射板干涉仪测量确定的波前误差进行直接比较。结果证实了傅科测试用于非常小误差的定量波前分析的实用性,并且揭示了普遍认为该测试仅限于定性用途这一观点的错误。讨论了这些结果对光学测试的影响以及傅科测试在轨道空间望远镜波前分析中的潜在用途。