Title :
Ultrafast semiconductor-based fiber laser sources
Author :
Vlachos, Kyriakos ; Bintjas, Chris ; Pleros, Nikos ; Avramopoulos, Hercules
Author_Institution :
Bell Labs. Adv. Technol. EMEA, Hilversum, Netherlands
Abstract :
In this paper, a novel ring laser platform is presented that uses a single active element, a semiconductor optical amplifier (SOA), to provide both gain and gain modulation in the optical cavity. Gain modulation is achieved by an externally introduced optical pulsed signal. This signal periodically saturates the amplifier gain and forces the ring laser to mode lock. Using this laser platform, we demonstrate picosecond pulsetrain generation at repetition rates up to 40 GHz, either in single or multiwavelength operation mode. In particular, using rational harmonic mode locking, 2.5-ps pulses were obtained up to a 40-GHz repetition rate, while output pulses and output power were constant over a 20-nm tuning range. In addition, a multiwavelength optical signal was obtained using the same laser platform with the addition of a Fabry-Pe´rot filter for comb generation. Multiwavelength oscillation is possible due to the broad gain spectrum of the SOA used and its inhomogeneous line broadening. To this end, 48 oscillating wavelengths were obtained at the laser output, with 50-GHz line spacing. Combining both modes of operation, it was possible to mode lock the oscillating multiwavelength signal and to obtain at the output ten wavelength channels, simultaneously mode locked at a 30-GHz repetition rate. The mode-locked channels are temporarily synchronized and exhibit almost identical spectral and time characteristics.
Keywords :
fibre lasers; laser cavity resonators; laser mode locking; laser tuning; optical filters; optical modulation; optical pulse generation; ring lasers; semiconductor optical amplifiers; spectral line broadening; 2.5 ps; 2.5-ps pulses; 20-nm tuning range; 30 GHz; 30-GHz repetition rate; 40 GHz; 40-GHz repetition rate; 50 GHz; 50-GHz line spacing; Fabry-Perot filter; SOA; amplifier gain; broad gain spectrum; comb generation; externally introduced optical pulsed signal; gain modulation; inhomogeneous line broadening; mode locking; mode-locked channels; multiwavelength operation mode; multiwavelength optical signal; multiwavelength oscillation; optical cavity; picosecond pulsetrain generation; rational harmonic mode locking; ring laser platform; semiconductor optical amplifier; single active element; single wavelength operation mode; spectral characteristics; time characteristics; ultrafast semiconductor-based fiber laser sources; Fiber lasers; Laser mode locking; Optical filters; Optical modulation; Optical saturation; Pulse amplifiers; Ring lasers; Semiconductor lasers; Semiconductor optical amplifiers; Ultrafast optics;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/JSTQE.2003.822941