摘要
提出一种基于相位采样的分布反馈式双波长光纤激光器,在不同的空间位置同时引入相位和采样周期的突变。通过理论分析,这种结构能够实现谐振腔的分离,使不同波长的光波利用不同空间位置的增益介质,克服增益介质均匀加宽引起的模式竞争,实现双波长激射。采用准分子激光器和均匀相位模板,在掺铒光纤上制作波长差为0.46nm的双波长光纤激光器,能够实现双波长激射。通过实验,对激光器输出功率和光栅强度的关系进行研究,表明输出功率和光栅强度成反比。
A dual-wavelength distributed feedback (DFB) fiber laser based on phase sampling is proposed and demonstrated. Change of phase and sampling period is introduced at different positions along a sampling Bragg grating. It is demonstrated theoretically that this structure can provide separate resonant cavities to overcome mode competition caused by gain homogeneous broading. A 0.46 nm-spaced dual-wavelength DFB fiber laser is achieved on an Er-doped fiber with excimer laser and homogeneous phase plate. Experiments shows that dual-wavelength lasing is achieved and laser Dower is in reverse proportion with coupling coefficient of the FBG.
出处
《光学学报》
EI
CAS
CSCD
北大核心
2008年第5期919-922,共4页
Acta Optica Sinica