典型文献
High signal-to-noise ratio fiber laser at 1596 nm based on a Bi/Er/La co-doped silica fiber
文献摘要:
We fabricate a high-performance Bi/Er/La co-doped silica fiber with a fluorescence intensity of-33.8 dBm and a gain coefficient of 1.9 dB/m.With the utilization of the fiber as a gain medium,a linear-cavity fiber laser has been constructed,which exhibits a signal-to-noise ratio of 74.9 dB at 1596 nm.It has been demonstrated that the fiber laser has a maximum output power of 107.4 mW,a slope efficiency of up to 17.0%,and a linewidth of less than 0.02 nm.Moreover,an all-fiber single-stage optical amplifier is built up for laser amplification,by which the amplified laser power is up to 410.0 mW with pump efficiency of 33.8%.The results indicate that the laser is capable of high signal-to-noise ratio and narrow linewidth,with potential applications for optical fiber sensing,biomedicine,precision measurement,and the pump source of the mid-infrared fiber lasers.
文献关键词:
中图分类号:
作者姓名:
Lei Yang;Jianxiang Wen;Yan Wu;Ying Wan;Longzhao Zeng;Wei Chen;Fufei Pang;Xiaobei Zhang;Tingyun Wang
作者机构:
Laboratory of Specialty Fiber Optics and Optical Access Networks,School of Communication and Information Engineering,Shanghai University,Shanghai 200444,China
文献出处:
引用格式:
[1]Lei Yang;Jianxiang Wen;Yan Wu;Ying Wan;Longzhao Zeng;Wei Chen;Fufei Pang;Xiaobei Zhang;Tingyun Wang-.High signal-to-noise ratio fiber laser at 1596 nm based on a Bi/Er/La co-doped silica fiber)[J].中国光学快报(英文版),2022(05):19-23
A类:
B类:
High,signal,noise,ratio,fiber,Bi,Er,La,doped,silica,We,fabricate,high,performance,fluorescence,intensity,dBm,gain,coefficient,With,utilization,medium,linear,cavity,has,been,constructed,which,exhibits,It,demonstrated,that,maximum,output,power,mW,slope,efficiency,up,linewidth,less,than,Moreover,all,single,stage,optical,amplifier,built,amplification,by,amplified,pump,results,indicate,capable,narrow,potential,applications,sensing,biomedicine,precision,measurement,source,mid,infrared,lasers
AB值:
0.51162
相似文献
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。