DocumentCode :
737987
Title :
Comprehensive Theoretical and Experimental Study of Short- and Long-Term Stability in a Passively Mode-Locked Solitonic Fiber Laser
Author :
Brotons-Gisbert, M. ; Villanueva, G.E. ; Abreu-Afonso, J. ; Serafino, G. ; Bogoni, A. ; Andres, M.V. ; Perez-Millan, P.
Author_Institution :
Inst. de Cienc. de los Mater., Univ. de Valencia, Valencia, Spain
Volume :
33
Issue :
19
fYear :
2015
Firstpage :
4039
Lastpage :
4049
Abstract :
We demonstrate the short- and long-term stable operation of an all-polarization-maintained Fabry-Pérot cavity passively mode-locked fiber laser. The laser operates in an all-anomalous-dispersion solitonic regime. Laser stability is studied by a variety of measurements, which confirm the high stability of the laser in the temporal and spectral-both optical and electrical-domains. Pulse durations of 540 fs, period-relative time jitters of ~0.0150/00, and long-term uninterrumped operation with 0.4% variation (standard deviation) in the average output power are obtained. The highly stable operation of the laser oscillator was maintained after amplifying the laser output with a conventional EDFA. Pulse durations of ~244 fs, period-relative time jitters of ~0.0190/00, and an average output power of 20 mW were obtained after amplification, while maintaining the 100-dB signal-to-noise ratio of the laser oscillator measured at 500-Hz offset from the fundamental harmonic frequency. The theoretical validation of our experimental results is based on solutions of the Nonlinear Schrödinger Equation. We demonstrate that wavelength and z -position dependences of the active medium gain must be taken into account for an accurate correspondence with the experimental properties of the laser.
Keywords :
Schrodinger equation; erbium; laser cavity resonators; laser mode locking; laser noise; laser stability; optical fibre amplifiers; optical fibre dispersion; optical fibre polarisation; optical solitons; timing jitter; EDFA; active medium gain; all-anomalous-dispersion solitonic regime; all-polarization-maintained Fabry-Perot cavity passively mode-locked fiber laser; electrical domains; frequency 500 Hz; fundamental harmonic frequency; laser oscillator; laser output amplification; laser stability; long-term stability; long-term uninterrumped operation; nonlinear Schrodinger equation; optical domains; output power; passively mode-locked solitonic fiber laser; period-relative time jitters; power 20 mW; pulse durations; short-term stability; signal-to-noise ratio; standard deviation; time 540 fs; z-position dependence; Cavity resonators; Laser mode locking; Laser stability; Measurement by laser beam; Optical pulses; Optical resonators; Optical solitons; Erbium lasers; Fiber lasers; erbium lasers; fiber lasers; laser stabilization; mode-locked lasers; ultrafast lasers;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2015.2455153
Filename :
7154406
Link To Document :
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