Title :
Tunable multi-wavelength SOA based linear cavity fiber laser source for optical communications applications
Author :
Ummy, M.A. ; Madamopoulos, N. ; Dorsinville, R.
Author_Institution :
Dept. of Electr. & Telecommun. Eng. Technol., New York City Coll. of Technol., Brooklyn, NY, USA
Abstract :
We propose and demonstrate a simple compact, inexpensive, SOA-based, multi-wavelength tunable (C- to L-band) fiber laser. A C-band design SOA is used, yet multi-wavelength operation either at the C or L-band region is accomplished by exploiting the gain compression phenomena of the SOA. We demonstrate that the wavelength tunability can be achieved either by inserting a variable attenuator inside the cavity of the laser or by changing the reflectivity of the mirrors. We exploit two different kinds of loop mirrors, a Sagnac and a Lyot-Sagnac loop mirror, which perform multiple functions. Stable multi-wavelength operation is achieved at room temperature without temperature compensation techniques, with measured power and the wavelength stability within <; ±0.5 dB and ±0.1 nm, respectively.
Keywords :
fibre lasers; laser cavity resonators; laser mirrors; laser stability; laser tuning; optical attenuators; optical communication equipment; reflectivity; semiconductor optical amplifiers; C-band design; Lyot-Sagnac loop mirror; Sagnac loop mirror; gain compression; linear cavity fiber laser; loop mirrors; optical communications applications; reflectivity; temperature 293 K to 298 K; tunable multiwavelength SOA; variable attenuator; wavelength stability; Cavity resonators; Erbium-doped fiber lasers; Gain; Optical fiber amplifiers; Optical fiber communication; Optical fiber polarization; Semiconductor optical amplifiers; Lyot-Sagnac Loop Mirror; Multiwavelength laser; fiber loop mirror; semiconductor optical amplifier (SOA); tunable laser;
Conference_Titel :
Communications and Information Technology (ICCIT), 2011 International Conference on
Conference_Location :
Aqaba
Print_ISBN :
978-1-4577-0401-7
DOI :
10.1109/ICCITECHNOL.2011.5762701