材料科学
光学
光纤激光器
边坡效率
光子晶体光纤
激光器
光遮蔽
芯(光纤)
镱
石英纤维
兴奋剂
波长
光电子学
复合材料
物理
作者
Meng Wang,Fan Wang,Suya Feng,Chunlei Yu,Shikai Wang,Qinling Zhou,Lei Zhang,Fengguang Lou,Danping Chen,Lili Hu
标识
DOI:10.3788/col201917.071401
摘要
A large-mode-area (LMA) ytterbium-doped photonic crystal fiber (PCF) with core NA of 0.034 and core diameter of 50 μm was made by the stack-and-draw technique. The core is formed by Yb3+/Al3+/F /P5+ co-doped silica glass containing 0.09 mol% Yb2O3 with an absorption coefficient at 976 nm up to 3.2 dB/m. The core glass with homogeneous distribution of Yb3+ ions and refractive index difference of 4 × 10 4 compared with pure silica was prepared by the sol-gel method and heat homogenization at 2000°C. Laser power amplification of this LMA PCF was studied using a seed source of 21 ps pulse duration and 48.7 MHz repetition rate at 1030 nm wavelength. With pump power of 520 W, a maximum 272 W (266 kW peak power) quasi-single-mode laser output with M2 of 2.2 was achieved in a 4.7 m fiber length bent at a diameter of 47 cm with slope efficiency of 52%, and no obvious mode instability, stimulated Raman scattering, or thermal damage on the end facet of the fiber were observed.
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