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@article{PFMT_2013_4_a0, author = {Zh. V. Kolyadko and V. V. Shepelevich and S. F. Nichiporko and S. M. Shandarov}, title = {One-dimensional solitonlike dark odd beams in a cubic optically active photorefractive piezocrystal $\mathrm{Bi_{12}SiO_{20}}$}, journal = {Problemy fiziki, matematiki i tehniki}, pages = {7--13}, publisher = {mathdoc}, number = {4}, year = {2013}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/PFMT_2013_4_a0/} }
TY - JOUR AU - Zh. V. Kolyadko AU - V. V. Shepelevich AU - S. F. Nichiporko AU - S. M. Shandarov TI - One-dimensional solitonlike dark odd beams in a cubic optically active photorefractive piezocrystal $\mathrm{Bi_{12}SiO_{20}}$ JO - Problemy fiziki, matematiki i tehniki PY - 2013 SP - 7 EP - 13 IS - 4 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/PFMT_2013_4_a0/ LA - ru ID - PFMT_2013_4_a0 ER -
%0 Journal Article %A Zh. V. Kolyadko %A V. V. Shepelevich %A S. F. Nichiporko %A S. M. Shandarov %T One-dimensional solitonlike dark odd beams in a cubic optically active photorefractive piezocrystal $\mathrm{Bi_{12}SiO_{20}}$ %J Problemy fiziki, matematiki i tehniki %D 2013 %P 7-13 %N 4 %I mathdoc %U http://geodesic.mathdoc.fr/item/PFMT_2013_4_a0/ %G ru %F PFMT_2013_4_a0
Zh. V. Kolyadko; V. V. Shepelevich; S. F. Nichiporko; S. M. Shandarov. One-dimensional solitonlike dark odd beams in a cubic optically active photorefractive piezocrystal $\mathrm{Bi_{12}SiO_{20}}$. Problemy fiziki, matematiki i tehniki, no. 4 (2013), pp. 7-13. http://geodesic.mathdoc.fr/item/PFMT_2013_4_a0/
[1] M. Shih et al., “Waveguides induced by photorefractive screening solitons”, J. Opt. Soc. Am. B, 14:11 (1997), 3091–3101 | DOI
[2] W. Q. Chen et al., “Surface dark screening solitons”, Opt. Lett., 36:19 (2011), 3801–3803 | DOI
[3] R. G. Scott et al., “Dynamics of dark solitons in a trapped superfluid fermi gas”, J. Phys. Rev. Lett., 106:18 (2011), 185301–185305 | DOI
[4] Yu. S. Kivshar, G. P. Agraval, Opticheskie solitony. Ot volokonnykh svetovodov do fotonnykh kristallov, per. s angl. pod red. N. N. Rozanova, Fizmatlit, M., 2005, 648 pp.
[5] T. N. Coskun et al., “Dynamics of incoherent bright and dark self-trapped beams and their coherence properties in photorefractive crystals”, Opt. Lett., 23:6 (1998), 418–420 | DOI | MR
[6] Z. Chen et al., “Self-trapping of dark incoherent light beams”, Science, 280 (1998), 889–892 | DOI
[7] M. D. Iturbe Castillo et al., “(1+1)-Dimension dark spatial solitons in photorefractive $\mathrm{Bi_{12}TiO_{20}}$ crystal”, Opt. Commun., 118:5–6 (1995), 515–519 | DOI
[8] M. M. Mendez Otero et al., “High order dark spatial solitons in photorefractive $\mathrm{Bi_{12}TiO_{20}}$ crystal”, Opt. Commun., 193:2 (2001), 277–282 | DOI
[9] A. A. Kolegov i dr., “Adaptivnaya interferometriya, ispolzuyuschaya dinamicheskie otrazhatelnye gologrammy v kubicheskikh fotorefraktivnykh kristallakh”, Kvantovaya elektronika, 41:9 (2011), 847–852
[10] R. V. Romashko et al., “Fast photogalvanic response of a $\mathrm{Bi_{12}SiO_{20}}$ crystal”, Opt. Express, 18:26 (2010), 27142–27154 | DOI
[11] M. P. Petrov, S. I. Stepanov, A. V. Khomenko, Fotorefraktivnye kristally v kogerentnoi optike, Nauka, SPb., 1992, 320 pp.
[12] V. V. Shepelevich, “O golograficheskikh reshetkakh v girotropnykh sredakh”, Pisma v ZhTF, 7:23 (1981), 1380–1384
[13] K. Lu et al., “Dark incoherent soliton splitting in biased photorefractive-photovoltaic crystals”, Opt. Commun., 282 (2009), 3335–3338 | DOI
[14] Zh. V. Kolyadko i dr., “Rasprostranenie odnomernogo temnogo puchka v kubicheskom opticheski aktivnom fotorefraktivnom kristalle”, Pisma v ZhTF, 39:22 (2013), 40–45
[15] S. Liu, W. Wang, J. Xu, “(2+1)-Dimensional fundamental spatial dark soliton”, Appl. Phys. Lett., 66:6 (1995), 665–666 | DOI
[16] Z. Chen et al., “Sequential formation of multiple dark photorefractive spatial solitons: experiments and theory”, J. Opt. Soc. Am. B, 14:6 (1997), 1407–1417 | DOI
[17] A. A. Izvanov i dr., “Vliyanie pezoeffekta na protsessy zapisi i vosstanovleniya gologramm v fotorefraktivnykh kristallakh”, Avtometriya, 1986, no. 2, 79–84
[18] S. I. Stepanov, S. M. Shandarov, N. D. Khatkov, “Fotouprugii vklad v fotorefraktivnyi effekt v kubicheskikh kristallakh”, FTT, 29:10 (1987), 3054–3058
[19] S. M. Shandarov, V. V. Shepelevich, N. D. Khatkov, “Izmerenie tenzora dielektricheskoi pronitsaemosti v kubicheskikh fotorefraktivnykh pezoelektricheskikh kristallakh pod deistviem elektricheskogo polya golograficheskoi reshetki”, Optika i spektroskopiya, 70:5 (1991), 1068–1073
[20] V. V. Shepelevich, S. M. Shandarov, A. E. Mandel, “Light diffraction by holographic gratings in optically active photorefractive piezocrystals”, Ferroelectrics, 110 (1990), 235–249 | DOI
[21] E. Fazio et al., “Solitonlike propagation in photorefractive crystals with large optical activity and absorption”, Physical Review E, 66 (2002), 016605-1–016605-11 | DOI | MR
[22] O. A. Kashin i dr., “Samovozdeistvie svetovykh puchkov v kristallakh sillenitov sreza (112)”, Izvestiya RAN. Seriya fizicheskaya, 70:12 (2006), 1748–1751
[23] O. A. Kashin i dr., “Vliyanie opticheskoi aktivnosti na samoiskrivlenie svetovogo puchka v kubicheskikh fotorefraktivnykh kristallakh vo vneshnem znakoperemennom elektricheskom pole”, Izvestiya Vuzov. Fizika, 47:7 (2004), 26–32
[24] S. Bernhardt et al., “Photorefractive two-beam coupling characterization of a barium-calcium titanate crystal”, Appl. Phys. B, 70 (2000), 789–795 | DOI
[25] V. V. Shepelevich i dr., “Vliyanie opticheskoi aktivnosti na samofokusirovku svetovykh puchkov v fotorefraktivnykh kristallakh”, Kvantovaya elektronika, 33:5 (2003), 446–450
[26] W. Krolikowski et al., “Effect of natural optical activity on the propagation of photorefractive solitons”, Opt. Commun., 132 (1996), 179–189 | DOI