Инд. авторы: Bednyakova A.E., Fedoruk M.P., Podivilov E.V., Kharenko D.S., Babin S.A., Apolonski A.A., Kalashnikov V.L.
Заглавие: Simulation of dissipative solitons in a fiber laser oscillator at presence of strong raman scattering
Библ. ссылка: Bednyakova A.E., Fedoruk M.P., Podivilov E.V., Kharenko D.S., Babin S.A., Apolonski A.A., Kalashnikov V.L. Simulation of dissipative solitons in a fiber laser oscillator at presence of strong raman scattering // Optics InfoBase Conference Papers. - 2013. - Vol.:International Quantum Electronics Conference, IQEC 2013.
Внешние системы: SCOPUS: 2-s2.0-84900304321; WoS: 000355316300536; РИНЦ: 21917525; DOI: 10.1109/CLEOE-IQEC.2013.6801127; РИНЦ: 23974563; РИНЦ: 23974601; SCOPUS: 2-s2.0-84898734224;
Реферат: eng: Formation of dissipative solitons (DS) in a normal-dispersion cavity of passively mode-locked fiber laser oscillators shows a great promise for generation of stable high-energy femtosecond pulse trains [1]. All-fiber design of the laser cavity greatly improves a stability of the laser, see e.g. [2], but increasing energy of the DS pulses at lengthening of a laser cavity is limited by a onset of stimulated Raman scattering (SRS) converting part of DS energy to the Stokes-shifted wavelengths [3]. A natural question arises about stability of the dissipative solitons in a fiber oscillator at presence of strong SRS effect. © 2013 IEEE.
Ключевые слова: Stimulated raman scatterings (SRS); SRS effect; Passively mode-locked fiber lasers; Fiber laser oscillators; Dissipative solitons; All fiber; A-stability; Solitons; Quantum electronics; Passive mode locking; Laser resonators; Fiber lasers; Electromagnetic pulse; Electron optics;
Издано: 2013
Конференция: Название: International Quantum Electronics Conference, IQEC 2013
Аббревиатура: IQEC-2013
Город: Munich
Даты проведения: 2013-05-12 - 2013-05-16
Цитирование: 1. W. H. Renninger, F. W. Wise, "Dissipative soliton fiber laser," in Fiber Lasers, O. G. Okhotnikov, ed., Wiley, 2012. 2. D. Mortag, D. Wandt, U. Morgner, D. Kracht, J. Neumann, "Sub-80-fs pulses from an all-fiber-integrated dissipative-soliton laser at 1 μm," Optics Express 19, 546 (2011). 3. D. S. Kharenko, E. V. Podivilov, A. A. Apolonski, and S. A. Babin, "20 nJ 200 fs all-fiber highly chirped dissipative soliton oscillator," Optics Letters 37, 4104 (2012). 4. G. P. Agrawal, Nonlinear Fiber Optics, Academic Press, San Diego, California, 2001. 5. D. Hollenbeck, C. D. Cantrell, "Multiple-vibrational-mode model for fiber-optic Raman gain spectrum and response function," J. Opt. Soc. Am. B 19, 2886 (2002).