ITMO
ru/ ru

ISSN: 1023-5086

ru/

ISSN: 1023-5086

Scientific and technical

Opticheskii Zhurnal

A full-text English translation of the journal is published by Optica Publishing Group under the title “Journal of Optical Technology”

Article submission Подать статью
Больше информации Back

УДК: 617.7 535.34

Features of the diffraction of supershort pulsed radiation in a system of superimposed transmitting volume phase holographic gratings

For Russian citation (Opticheskii Zhurnal):

Ионина Н.В. Особенности дифракции импульсного излучения сверхкороткой длительности в системе наложенных пропускающих объемных фазовых голографических  решеток // Оптический журнал. 2012. Т. 79. № 10. С. 47–51.

 

Ionina N.V. Features of the diffraction of supershort pulsed radiation in a system of superimposed transmitting volume phase holographic gratings  [in English] // Opticheskii Zhurnal. 2012. V. 79. № 10. P. 47–51.

For citation (Journal of Optical Technology):

N. V. Ionina, "Features of the diffraction of supershort pulsed radiation in a system of superimposed transmitting volume phase holographic gratings," Journal of Optical Technology. 79(10), 645-648 (2012). https://doi.org/10.1364/JOT.79.000645

Abstract:

This paper discusses how the shape and spectrum of supershort radiation pulses are transformed as a result of diffraction at superimposed transmitting volume phase holographic gratings. It shows that de-interleaving of the light signal with simultaneous demultiplexing in the diffracted beam can be carried out in such a system.

Keywords:

holographic grating, diffraction, multiplex holograms, femtosecond laser, non-monochromatic radiation, deinterliving, demultiplexing

OCIS codes: 090.0090, 050.7330, 070.0070, 320.0320

References:
1. S. A. Akhmanov, V. A. Vysloukh, and A. S. Chirkin, The Optics of Femtosecond Laser Pulses (Nauka, Moscow, 1988).
2. Collection. The Optics of Nanostructures (Nedra, St. Petersburg, 2005).
3. R. L. Freeman, Fiber-Optics Systems for Telecommunications (Wiley-Interscience, New York, 2002; Tekhnosfera, Moscow, 2007).
4. Yu. T. Mazurenko, “Self-referential measurement of a supershort pulse by the method of interferometry of monochromatic waves,” in Transactions
of the Scientific Research Center of Photonics and Optoinformatics (GU ITMO, St. Petersburg, 2009), pp. 159–185.
5. M. A. Cervantes and A. M. Smolovich, “Ultrashort light-pulse scattering by 3D interference-fringe structure,” Proc. SPIE 4752, 66 (2002).
6. N. V. Ionina, “Features of the diffraction of pulsed femtosecond radiation at a transmissive holographic volume grating,” Opt. Zh. 76, No. 6, 34 (2009).
[J. Opt. Technol. 76, 345 (2009)].
7. L. Solymar and D. J. Cook, Volume Holography and Volume Gratings (Academic Press, London, 1981), pp. 155–160.
8. H. Kogelnik, “Coupled wave theory for thick hologram grating,” Bell Syst. Tech. J. 48, 2909 (1969).
9. N. V. Ionina, O. V. Andreeva, O. V. Bandyuk, and A. A. Paramonov, “How the holographic characteristics of samples of a polymeric recording medium are associated with their hardness,” Opt. Zh. 69, No. 6, 35 (2002). [J. Opt. Technol. 69, 403 (2002)].
10. N. V. Ionina, O. V. Andreeva, O. V. Bandyuk, and A. A. Paramonov, “Features of the post-exposure processing of the polymeric recording material Diffen for holographic elements,” in Collection of the Transactions of the Sixth International Conference on Applied Optics 2004, St. Petersburg, 2004, pp. 175–177.