Title :
Microjoule-level picosecond and femtosecond mode-locked fiber oscillators
Author :
Ortaç, B. ; Baumgartl, M. ; Schmidt, O. ; Hideur, A. ; Sagnes, I. ; Garnache, A. ; Limpert, J. ; Tünnermann, A.
Author_Institution :
Inst. of Appl. Phys., Friedrich-Schiller Univ., Jena, Germany
Abstract :
This study demonstrates femtosecond mode-locked fiber oscillators that can generate pulse energies beyond the microjoule-level at high average power. In the experiment, an endlessly single-mode passive fiber-based mode filter is applied inside the cavity, resulting in an M2 value of about 1.2 at the output. In the femtosecond regime, the saturable absorber mirror with high modulation depth (~30 %) and fast relaxation time (~500 fs) is employed, which produces a cavity repetition rate of about 9.7 MHz. In the single pulse regime, the highest possible average output power is as high as 9 W, corresponding to a pulse energy of 927 nJ. The step edges shape emission spectrum is shown, along with the 1034.6 nm center wavelength and the 8.8 nm spectral bandwidth. The fiber laser generates positively chirped 8 ps-long output pulses, which are then compressed down to 711 fs with up to megawatt peak power levels.
Keywords :
chirp modulation; fibre lasers; laser cavity resonators; laser mirrors; laser mode locking; laser modes; optical modulation; optical pulse compression; optical pulse generation; optical saturable absorption; energy 927 nJ; femtosecond fiber oscillators; femtosecond regime; frequency 9.7 MHz; laser cavity; microjoule-level fiber oscillators; mode-locked fiber oscillators; modulation depth; passive fiber-based mode filter; picosecond fiber oscillators; picosecond pulse generation; positively chirped pulses; pulse compression; saturable absorber mirror; single pulse regime; single-mode filter; step edges shape emission spectrum; time 500 fs; time 711 fs; time 8 ps; wavelength 1034.6 nm; Bandwidth; Fiber lasers; Mirrors; Optical pulse generation; Oscillators; Passive filters; Power generation; Power lasers; Pulse generation; Shape;
Conference_Titel :
Lasers and Electro-Optics 2009 and the European Quantum Electronics Conference. CLEO Europe - EQEC 2009. European Conference on
Conference_Location :
Munich
Print_ISBN :
978-1-4244-4079-5
Electronic_ISBN :
978-1-4244-4080-1
DOI :
10.1109/CLEOE-EQEC.2009.5192956