Инд. авторы: | Tarasov N., Sugavanam S., Churkin D. |
Заглавие: | Revealing spatio-temporal regimes of generation in raman fiber lasers |
Библ. ссылка: | Tarasov N., Sugavanam S., Churkin D. Revealing spatio-temporal regimes of generation in raman fiber lasers // 2015 Spatiotemporal Complexity in Nonlinear Optics, SCNO 2015. - 2015: Institute of Electrical and Electronics Engineers Inc. - Art.7323995. |
Внешние системы: | DOI: 10.1109/SCNO.2015.7323995; РИНЦ: 27098261; SCOPUS: 2-s2.0-84971667909; WoS: 000380445200001; |
Реферат: | eng: We present here experimental observation of different spatio-temporal generation regimes in quasi-CW Raman fiber laser in the most simple experimental configuration. The generation regimes depend on pump power and range from partial mode-locking to turbulent, and a generation of short-lived pulses. While in temporal domain transitions could be described in quantitative way, in spatio-temporal domain they represent qualitative change in observed dynamics. |
Ключевые слова: | SOLITONS; |
Издано: | 2015 |
Физ. характеристика: | 7323995 |
Конференция: | Название: 2015 Spatiotemporal Complexity in Nonlinear Optics Аббревиатура: SCNO-2015 Город: Como Даты проведения: 2015-08-31 - 2015-09-04 |
Цитирование: | 1. S. A. Babin, D. V. Churkin, A. E. Ismagulov, S. I. Kablukov, and E. V. Podivilov, "Four-wave-mixing-induced turbulent spectral broadening in a long Raman fiber laser," J. Opt. Soc. Am. B, vol. 24, no. 8, p. 1729, Aug. 2007. 2. A. Picozzi, J. Garnier, T. Hansson, P. Suret, S. Randoux, G. Millot, and D. N. Christodoulides, "Optical wave turbulence: Towards a unified nonequilibrium thermodynamic formulation of statistical nonlinear optics," Phys. Rep., vol. 542, no. 1, pp. 1-132, Sep. 2014. 3. B. Barviau, B. Kibler, and A. Picozzi, "Wave-turbulence approach of supercontinuum generation: Influence of self-steepening and higher-order dispersion," Phys. Rev. A, vol. 79, no. 6, p. 63840, Jun. 2009. 4. D. V Churkin, I. V Kolokolov, E. V Podivilov, I. D. Vatnik, M. A. Nikulin, S. S. Vergeles, I. S. Terekhov, V. V Lebedev, G. Falkovich, S. A. Babin, and S. K. Turitsyn, "Wave kinetics of random fibre lasers," Nat Commun, vol. 2, Feb. 2015. 5. P. Walczak, M. Onorato, and P. Suret, "Intermittency in integrable turbulence," Phys. Rev. Lett., vol. 113902, no. 11, pp. 1-5, 2014. 6. P. Walczak, S. Randoux, and P. Suret, "Optical Rogue Waves in Integrable Turbulence," Phys. Rev. Lett., vol. 114, no. 14, pp. 33-35, 2015. 7. M. Conforti, A. Mussot, J. Fatome, A. Picozzi, S. Pitois, C. Finot, M. Haelterman, B. Kibler, C. Michel, and G. Millot, "Turbulent dynamics of an incoherently pumped passive optical fiber cavity: Quasisolitons, dispersive waves, and extreme events," Phys. Rev. A, vol. 91, no. 2, p. 23823, Feb. 2015. 8. D. V. Churkin, S. Sugavanam, N. Tarasov, S. Khorev, S. V. Smirnov, S. M. Kobtsev, and S. K. Turitsyn, "Stochasticity, periodicity and localized light structures in partially mode-locked fibre lasers," Nat. Commun., vol. 6, no. May, p. 7004, 2015. 9. J. K. Jang, M. Erkintalo, S. G. Murdoch, and S. Coen, "Ultraweak longrange interactions of solitons observed over astronomical distances," Nat. Photonics, vol. 7, no. 8, pp. 657-663, Jul. 2013. 10. B. Garbin, J. Javaloyes, G. Tissoni, and S. Barland, "Topological solitons as addressable phase bits in a driven laser," Nat. Commun., vol. 6, p. 5915, Jan. 2015. 11. A. F. J. Runge, N. G. R. Boderick, and M. Erkintalo, "Observation of soliton explosions in a passively mode-locked fiber laser," Optica, vol. 2, no. 1, pp. 36-39, 2015. 12. S. Chouli and P. Grelu, "Rains of solitons in a fiber laser," Opt. Express, vol. 17, no. 14, pp. 11776-11781, Jul. 2009. 13. S. Chouli and P. Grelu, Soliton rains in a fiber laser: An experimental study, Phys. Rev. A, vol. 81, no. 6, p. 63829, Jun. 2010. 14. E. G. Turitsyna, S. V. Smirnov, S. Sugavanam, N. Tarasov, X. Shu, S. A. Babin, E. V. Podivilov, D. V. Churkin, G. Falkovich, and S. K. Turitsyn, "The laminarturbulent transition in a fibre laser," Nat. Photonics, vol. 7, no. 10, pp. 783-786, Sep. 2013. |