基于非线性放大环镜的全光纤掺铥锁模激光器

ALT Proceedings Pub Date : 2012-11-01 DOI:10.12684/ALT.1.89
M. Chernysheva, A. Krylov, P. Kryukov, N. Arutyunyan, A. S. Pozharov, E. Obraztsova, E. Dianov
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引用次数: 0

摘要

本文报道了基于非线性放大环镜和半导体可饱和吸收器(SESAM)和单壁碳纳米管(SWCNT)锁模的掺铥全光纤激光器。利用被动式硅酸锗纤维实现了腔内和腔外分散管理。SESAM锁模激光器产生短至230-fs的脉冲,最大平均输出功率为106 mW,对应于3.7 kW的峰值功率和近2 nJ的脉冲能量。与基于sesam的激光器相比,swcnts锁模激光器分别产生450-fs的脉冲,平均输出功率为mw级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
All-Fiber Thulium-Doped Mode-Locked Lasers Based on the Nonlinear Amplifying Loop Mirror
We  report  on  thulium-doped  all-fiber  lasers  based on the nonlinear amplifying loop mirror and mode-locked by both a semiconductor saturable absorber (SESAM) and  single-walled  carbon  nanotubes (SWCNT).  An  intracavity  and  external dispersion management was realized with the aid of a passive germanium-silicate fiber.  SESAM  mode-locked laser  generates  as  short  as  230-fs  pulses with maximum  average  output  power  of  106 mW, corresponding to a 3.7 kW peak power and almost 2 nJ  pulse  energy.  In  contrast  to  SESAM-based laser,  the SWCNT  mode-locked  laser  generates 450-fs  pulses  of  mW-level  average  output power respectively.
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