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Applied Optics

Applied Optics

APPLICATIONS-CENTERED RESEARCH IN OPTICS

  • Vol. 43, Iss. 27 — Sep. 20, 2004
  • pp: 5152–5161

Iterative reverse optimization procedure for calibration of aspheric wave-front measurements on a nonnull interferometer

Robert O. Gappinger and John E. Greivenkamp  »View Author Affiliations


Applied Optics, Vol. 43, Issue 27, pp. 5152-5161 (2004)
http://dx.doi.org/10.1364/AO.43.005152


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Abstract

The accuracy of interferometric measurements made with a nonnull configuration is degraded by test-dependent aberrations. Calibration of the data can be done with reverse optimization methods. An iterative reverse optimization process that improves efficiency and eliminates sensitive merit function weighting issues is described. The process is shown to calibrate a nonnull interferometric measurement of a wave front with more than 200 waves of departure to an accuracy of 0.16 waves peak to valley and 0.02 waves rms.

© 2004 Optical Society of America

OCIS Codes
(080.3620) Geometric optics : Lens system design
(220.1000) Optical design and fabrication : Aberration compensation
(220.1250) Optical design and fabrication : Aspherics
(220.4840) Optical design and fabrication : Testing

History
Original Manuscript: February 3, 2004
Revised Manuscript: June 5, 2004
Manuscript Accepted: June 10, 2004
Published: September 20, 2004

Citation
Robert O. Gappinger and John E. Greivenkamp, "Iterative reverse optimization procedure for calibration of aspheric wave-front measurements on a nonnull interferometer," Appl. Opt. 43, 5152-5161 (2004)
http://www.opticsinfobase.org/ao/abstract.cfm?URI=ao-43-27-5152


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