Efficiency of spectral transformation
News of the Kabardin-Balkar scientific center of RAS, no. 6-1 (2013), pp. 13-20.

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The experimental researches of nonlinear-optical processes are carried out at distribution of femtosecond laser pulses in the microstructured fibres from a combination of leaden-silicate glasses. The analysis of the factors influencing efficiency of spectral transformation is carried out. On the basis of data received the conclusion is made that for the chosen materials and structures, length of a pumping wave (807 nm) essentially will defend on a rule of zero meaning dispersion of group speed.
Keywords: microstructured fibres, supercontinuum, leaden-silicate glasses, femtosecond laser radiation, group velocity dispersion.
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K. A. Bzheumikhov; Z. Ch. Margushev; Yu. V. Savoiskii; E. N. Makarov. Efficiency of spectral transformation. News of the Kabardin-Balkar scientific center of RAS, no. 6-1 (2013), pp. 13-20. http://geodesic.mathdoc.fr/item/IZKAB_2013_6-1_a1/

[1] R. R. Alfano, S. L. Shapiro, Phys. Rev. Lett., 1970, 24–584

[2] R. R. Alfano, The Supercontinuum Laser Source, Springer Verlag, New York, 1989

[3] S. A. Akhmanov, S. Yu. Nikitin, Fizicheskaya optika, Nauka, M., 2004, 666 pp.

[4] A. M. Zheltikov, Optika mikrostrukturirovannykh volokon, Nauka, M., 2004, 281 pp.

[5] J. K. Ranka, R. S. Windeller, A. J.M. Stentz, “Visible continuum generation in air- silica microstructure optical fibers with anomalous dispersion at 800 nm”, Optics Letts, 25 (2000), 25–27 | DOI

[6] K. A. Bzheumikhov, Z. Ch. Margushev, Kompyuternaya optika, 34:4 (2010), 495–500 (http://www.computeroptics.smr.ru/KO/Annot/KO34-4/09.html) http://elibrary.ru/item.asp?id=15500806

[7] A. M. Zheltikov, “Da budet belyi svet: generatsiya superkontinuuma sverkhkorotkimi impulsami”, UFN, 176:6 (2006), 623–649 http://ufn.ru/ru/articles/2006/6/d/ | DOI

[8] Yu. S. Skibina, V. V. Tuchin, V. I. Beloglazov, G. Shteinmaier, I. L. Betge, R. Vedell, N. Langkhoff, Kvantovaya elektronika, 41:4 (2011), 284–301

[9] G. Genty, Supercontinuum generation in microstructured fibers and novel optical measurement techniques, Ph.D. Dissertation, Helsinki University of Technology, Espoo, Finland http://lib.tkk.fi/Diss/2004/isbn9512270005/isbn9512270005.pdf

[10] http://bookfi.org/book/1217723

[11] S. R. Friberg, P. W. Smith, “Nonlinear optical glasses for ultrafast optical swithes”, IEEE J. Quantum Electron, 1987, 2089–2094 | DOI

[12] “P. Petropoulos , H. Ebendorff-Heidepriem , V. Finazzi , R. C. Moore , K. Frampton , D. J. Richardson , and T. M. Monro”, Opt. Express, 11 (2002), 3568–3573 http://www.orc.org.uk/viewpublication.html?pid=2790

[13] A. I. Filipenko, A. V. Ponomareva, “Sovremennoe sostoyanie problemy kontrolya konstruktivno-geometricheskikh parametrov mikrostrukturirovannykh opticheskikh volokon”, Radiotekhnika, 2008, no. 154, 102–107 http://archive.nbuv.gov.ua/portal/natural/rate/2008_154/102-107.pdf

[14] A. Ferrando, E. Silvestre, P. Andres, J. J. Mirret, M. V. Andres, Optics Express, 687:13 (2001) http://www.opticsinfobase.org/oe/abstract.cfm?URI=oe-9-13-687

[15] T. M. Monro, D. J. Richardson, N. G. Broderick, P. J. Bennett, Journal of Lighywave Technology, 17 (1999), 1093–1102 | DOI

[16] A. M. Zheltikov, UFN, 174 (2004), 73 http://ufn.ru/ru/articles/2004/1/e/ | DOI

[17] A. B. Fedotov et al., Opt. Commun, 2005, 255–218 http://www.sciencedirect.com/science/article/pii/S0030401805006541

[18] Lang Dong, Brian K. Thomas, Fu. Libin, Optics Express, 16:21 (2008), 16423–1430 http://www.opticsinfobase.org/oe/abstract.cfm?uri=oe-16-21-16423 | DOI