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Technique for the focal-length measurement of positive lenses using Fizeau interferometry

机译:使用菲索(Fizeau)干涉术测量正透镜的焦距的技术

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We present what we believe is a new technique for the focal-length measurement of positive lenses using Fizeau interferometery. The technique utilizes the Gaussian lens equation. The image distance is measured interferometrically in terms of the radius of curvature of the image-forming wavefront emerging from the lens. The radii of curvature of the image-forming wavefronts corresponding to two different axial object positions of known separation are measured. The focal length of the lens is determined by solving the equations obtained using the Gaussian lens equation for the two object positions. Results obtained for a corrected doublet lens of a nominal focal length of 200.0 mm with a measurement uncertainty of +-2.5percent is presented.
机译:我们介绍了我们认为是一种使用Fizeau干涉仪测量正透镜焦距的新技术。该技术利用了高斯透镜方程。图像距离是根据从镜头出射的成像波前的曲率半径进行干涉测量的。测量与已知间隔的两个不同轴向物体位置相对应的成像波前的曲率半径。镜头的焦距是通过求解使用高斯镜头方程式获得的两个物体位置的方程式来确定的。给出了标称焦距为200.0 mm的校正双合透镜的测量结果,测量不确定度为+ -2.5%。

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