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Journal of Optical Technology

Journal of Optical Technology

| SIMULTANEOUS RUSSIAN-ENGLISH PUBLICATION

  • Vol. 79, Iss. 7 — Jul. 1, 2012
  • pp: 395–398

Algorithm for calculating objective–achromats with separated components for telescopic and collimation systems

T. N. Khatsevich and V. L. Parko  »View Author Affiliations


Journal of Optical Technology, Vol. 79, Issue 7, pp. 395-398 (2012)
http://dx.doi.org/10.1364/JOT.79.000395


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Abstract

This paper describes an algorithm for designing objectives with separated components for telescopic and collimation systems. Combinations of various types of optical glasses are presented for objective–apochromats obtained using this algorithm. It is confirmed that inexpensive, easy-to-manufacture glasses can be used to obtain apochromatic correction of the image.

© 2012 OSA

History
Original Manuscript: December 16, 2011
Published: July 31, 2012

Citation
T. N. Khatsevich and V. L. Parko, "Algorithm for calculating objective–achromats with separated components for telescopic and collimation systems," J. Opt. Technol. 79, 395-398 (2012)
http://www.opticsinfobase.org/jot/abstract.cfm?URI=jot-79-7-395


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References

  1. G. M. Popov, Modern Astronomical Optics (Nauka, Moscow, 1988).
  2. A. P. Grammatin and E. A. Tsyganok, “Features of the secondary spectrum of the objectives of collimators that operate in the 400–900-nm wavelength region,” Izv. Vyssh. Uchebn. Zaved. Prib. 54, No. 9, 75 (2011).
  3. V. N. Churilovskiĭ, Theory of Chromatism and Third-Order Aberrations (Mashinostroenie, Leningrad, 1968).
  4. V. L. Parko and T. N. Khatsevich, “Apochromatic objective,” Russian Patent No. 2 429 508 (2011).
  5. V. L. Parko and K. L. Parko, “Calculating the APO,” Russian computer program No. 2011612810 (2011).
  6. A. S. Dubovik, M. I. Apenko, G. V. Dureĭko, A. M. Zhilkin, L. A. Zapryagaeva, D. A. Romanov, and D. S. Sveshnikova, Applied Optics, A. S. Dubovik, ed. (Nedra, Moscow, 1982).
  7. D. S. Volosov, Photographic Optics (Iskusstvo, Moscow, 1978).
  8. V. L. Parko, “Method of eliminating longitudinal chromatism in the objectives of telescopic systems,” in Collection of the Materials of the Seventh International Scientific Congress GEO-Siberia-2011 (Novosibirsk, 2011), Vol. 5, Part 1, pp. 15–19.
  9. V. L. Parko and T. N. Khatsevich, “Algorithm for choosing apochromatic pairs of glasses in a multicomponent astronomical objective,” Vestnik SGGA No. 2(13), 69 (2010).

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