Paper
13 July 2006 Numerical integration of an aspheric surface profile
Juan L. Rayces, Xuemin Cheng
Author Affiliations +
Proceedings Volume 6342, International Optical Design Conference 2006; 634224 (2006) https://doi.org/10.1117/12.692243
Event: International Optical Design Conference 2006, 2006, Vancouver, BC, Canada
Abstract
This paper deals with the design of aspherics on surfaces with steep curves in systems with very large numerical apertures, and small angular fields of view, with a goal to achieve rigorous axial stigmatism for specified finite axial conjugate points. In lens design, where numerical apertures are moderate, aspheric surface descriptions based on Feder's equation of a conic section with several polynomial terms give satisfactory results to a certain point. For larger numerical apertures plot of aberrations start showing ripples; increasing the number of polynomial terms is no remedy. This problem is similar to Runge's phenomenon and it is probably related to it, but yet not well understood. Alternative surface descriptions have been proposed with apparently some degree of success. Here we propose a method for designing aspheric surfaces in systems with large numerical apertures. In this method the profile of the aspheric is presented as a table of coordinates of key points, the points of intersection of meridian key rays with the surface. Such rays are rigorously corrected for spherical aberration for specified finite conjugates. For tracing other rays through the gap between key points, interpolation with a spline of degree 3 is proposed. Correction with this method has proved satisfactory for certain high aperture examples designed with a small number of key rays. For systems with still higher apertures the number of key rays may have to be increased and the interval between key points reduced accordingly but the degree of the spline is maintained to avoid ripples similar to Runge's phenomenon.
© (2006) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Juan L. Rayces and Xuemin Cheng "Numerical integration of an aspheric surface profile", Proc. SPIE 6342, International Optical Design Conference 2006, 634224 (13 July 2006); https://doi.org/10.1117/12.692243
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Cited by 2 scholarly publications.
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KEYWORDS
Aspheric lenses

Ray tracing

Geometrical optics

Lens design

Monochromatic aberrations

Numerical integration

Differential equations

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