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2. 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 24(8), 1729-1738 (2007).
3. S. I. Kablukov, E. A. Zlobina, E. V. Podivilov, and S. A. Babin, "Output spectrum of Yb-doped fiber lasers," Opt. Lett. 37(13), 2508-2510 (2012).
4. 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. 542(1), 1-132 (2014).
5. B. Barviau, B. Kibler, and A. Picozzi, "Wave-turbulence approach of supercontinuum generation: Influence of self-steepening and higher-order dispersion," Phys. Rev. A 79(6), 063840 (2009).
6. 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. 2, 6214 (2015).
7. S. Randoux, P. Walczak, M. Onorato, and P. Suret, "Intermittency in integrable turbulence," Phys. Rev. Lett. 113(11), 113902 (2014).
8. P. Walczak, S. Randoux, and P. Suret, "Optical rogue waves in integrable turbulence," Phys. Rev. Lett. 114(14), 143903 (2015).
9. 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 91(2), 023823 (2015).
10. S. Wabnitz, "Optical turbulence in fiber lasers," Opt. Lett. 39(6), 1362-1365 (2014).
11. E. G. Turitsyna, G. Falkovich, V. K. Mezentsev, and S. K. Turitsyn, "Optical turbulence and spectral condensate in long-fiber lasers," Phys. Rev. A 80(3), 031804 (2009).
12. 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 laminar-turbulent transition in a fibre laser," Nat. Photonics 7(10), 783-786 (2013).
13. P. Suret, P. Walczak, and S. Randoux, "Transient buildup of the optical power spectrum in Raman fiber lasers," Opt. Express 21(2), 2331-2336 (2013).
14. E. G. Turitsyna, S. K. Turitsyn, and V. K. Mezentsev, "Numerical investigation of the impact of reflectors on spectral performance of Raman fibre laser," Opt. Express 18(5), 4469-4477 (2010).
15. D. V. Churkin, S. V. Smirnov, and E. V. Podivilov, "Statistical properties of partially coherent cw fiber lasers," Opt. Lett. 35(19), 3288-3290 (2010).
16. D. V. Churkin and S. V. Smirnov, "Numerical modelling of spectral, temporal and statistical properties of Raman fiber lasers," Opt. Commun. 285(8), 2154-2160 (2012).
17. R. G. Smith, "Optical power handling capacity of low loss optical fibers as determined by stimulated Raman and brillouin scattering," Appl. Opt. 11(11), 2489-2494 (1972).
18. S. Randoux, N. Dalloz, and P. Suret, "Intracavity changes in the field statistics of Raman fiber lasers," Opt. Lett. 36(6), 790-792 (2011).
19. P. Walczak, S. Randoux, and P. Suret, "Statistics of a turbulent Raman fiber laser," Opt. Lett. 40(13), 3101-3104 (2015).
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