Paper
11 December 1984 Aplanatic Null Lens For Testing Single Point Machined Aspherical Lens Surfaces
Yossi Atiya, Dov Freiman
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Abstract
A simple and straightforward procedure for designing an aplanatic null lens, used in the testing of certain common convex ellipsoids and concave hyperboloids on a Fizeau interferometer, is described. In a conventional design the null lens aberrations are only reduced to some finite minimum which, depending on the asphere parameters and the design itself, may turn out to be significant. Using the proposed technique, which involves solving a set of simple equations, the determination of the parameters of an aplanatic null lens is readily achieved. The resulting null lens is nominally free of aberrations since each of the null lens surfaces transfers the analyzing wavefront aplanatically. Apart from gaining a more accurate means of evaluating aspherical lens surfaces, this reduction of aberrations results in a relaxation of otherwise tight null lens fabrication tolerances. Aplanatic null lenses have been designed and fabricated and are currently being used to test single point diamond machined aspherical Germanium lenses. Interferograms showing a null lens in a stand alone mode and in an asphere test configuration are shown.
© (1984) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Yossi Atiya and Dov Freiman "Aplanatic Null Lens For Testing Single Point Machined Aspherical Lens Surfaces", Proc. SPIE 0508, Production Aspects of Single Point Machined Optics, (11 December 1984); https://doi.org/10.1117/12.944963
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KEYWORDS
Aspheric lenses

Lens design

Wavefronts

Interferometers

Tolerancing

Monochromatic aberrations

Singular optics

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