Abstract

Based on the result of an aberrational analysis of a thin lens in air, it is demonstrated that not only stigmatic but also aplanatic correction of third-order aberrations is possible in an image formed by a system of positive lenses, and the conditions for carrying out this correction are determined.

© 2010 Optical Society of America

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References

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  1. D. S. Volosov and M. V. Tsivkin, Theory and Calculation of Light Optical Systems (Iskusstvo, Moscow, 1960).
  2. B. L. Nefedov, Methods of Solving Problems in Computational Optics (Mashinostroenie, Moscow, 1966).
  3. G. G. Slyusarev, Calculational Methods for Optical Systems (Mashinostroenie, Leningrad, 1969).
  4. V. A. Zverev, Principles of Geometrical Optics (SPbGITMO(TU), St. Petersburg, 2000).

Nefedov, B. L.

B. L. Nefedov, Methods of Solving Problems in Computational Optics (Mashinostroenie, Moscow, 1966).

Slyusarev, G. G.

G. G. Slyusarev, Calculational Methods for Optical Systems (Mashinostroenie, Leningrad, 1969).

Tsivkin, M. V.

D. S. Volosov and M. V. Tsivkin, Theory and Calculation of Light Optical Systems (Iskusstvo, Moscow, 1960).

Volosov, D. S.

D. S. Volosov and M. V. Tsivkin, Theory and Calculation of Light Optical Systems (Iskusstvo, Moscow, 1960).

Zverev, V. A.

V. A. Zverev, Principles of Geometrical Optics (SPbGITMO(TU), St. Petersburg, 2000).

Other

D. S. Volosov and M. V. Tsivkin, Theory and Calculation of Light Optical Systems (Iskusstvo, Moscow, 1960).

B. L. Nefedov, Methods of Solving Problems in Computational Optics (Mashinostroenie, Moscow, 1966).

G. G. Slyusarev, Calculational Methods for Optical Systems (Mashinostroenie, Leningrad, 1969).

V. A. Zverev, Principles of Geometrical Optics (SPbGITMO(TU), St. Petersburg, 2000).

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