Title :
Individually Switchable and Widely Tunable Multiwavelength Erbium-Doped Fiber Laser Based on Cascaded Mismatching Long-Period Fiber Gratings
Author :
Liu, Xuesong ; Zhan, Li ; Luo, Shouyu ; Wang, Yuxing ; Shen, Qishun
Author_Institution :
Dept. of Phys., Univ. of Shanghai Jiao Tong Univ., Shanghai, China
Abstract :
A novel concept of individually switchable and widely tunable erbium-doped multiwavelength fiber laser (MWFL) is proposed and experimentally demonstrated. The key component of the laser is a channel transmissivity individually variable comb filter composed of two cascaded different-length long-period fiber gratings (LPFGs), named cascaded mismatching LPFGs. When inserted into the laser cavity, this polarization-dependent comb filter functions as the wavelength selector and switching filter simultaneously. By properly adjusting the polarization controllers (PCs) in the laser cavity and in the high birefringence Sagnac loop mirror (HiBi-SLM), eleven individually switchable wavelengths with different flexible lasing states, including successively tunable adjacent single-, dual- and triple-wavelength outputs, nonadjacent dual- and triple-wavelength outputs, as well as quadruple- and quintuple-wavelength outputs, have been achieved. This MWFL may be useful in optical fiber sensing or other fields desiring very flexible optical source.
Keywords :
birefringence; erbium; fibre lasers; laser cavity resonators; laser mirrors; laser tuning; optical filters; cascaded mismatching long-period fiber gratings; channel transmissivity; high birefringence Sagnac loop mirror; laser cavity; laser tuning; multiwavelength fiber laser; optical fiber sensing; polarization controllers; switching filter; variable comb filter; wavelength selector; Erbium-doped fiber lasers; Fiber gratings; Optical fiber polarization; Optical switches; Quantum cascade lasers; Erbium-doped fiber laser (EDFL); long-period fiber grating (LPFG); multiwavelength fiber laser; polarization-dependent loss; switchable fiber laser; tunable fiber laser;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2011.2168386