Wen Xin, Tang Guowu, Wang Jinwen, Chen Xiaodong, Qian Qi, Yang Zhongmin
Opt Express. 2015 Mar 23;23(6):7722-31. doi: 10.1364/OE.23.007722.
Tm³⁺ doped barium gallo-germanate (BGG) glass has emerged as a promising 2.0 μm laser material offering excellent optical property. Unfortunately, low anti-crystallization ability and high OH⁻ content of the glass have hindered the fabrication of high-quality optical fibers. In this paper, La₂O₃ and Y₂O₃ were added into BGG glass to enhance the glass anti-crystallization ability. Additionally, the optimized Reaction Atmosphere Procedure (RAP) was utilized to minimize OH⁻ content. Continuous Tm³⁺ doped BGG glass single-mode (SM) fibers were successfully obtained by the rod-in-tube technique for the first time to our best knowledge. A 140 mW all-fiber laser at 1.95 μm was demonstrated using a 9.7-cm-long as-drawn Tm³⁺ doped BGG glass SM fiber upon excitation of a home-made 1568 nm fiber laser.
掺Tm³⁺的镓锗酸钡(BGG)玻璃已成为一种具有优异光学性能的有前途的2.0μm激光材料。不幸的是,该玻璃的抗结晶能力低和OH⁻含量高阻碍了高质量光纤的制造。本文中,将La₂O₃和Y₂O₃添加到BGG玻璃中以增强玻璃的抗结晶能力。此外,采用优化的反应气氛工艺(RAP)来最小化OH⁻含量。据我们所知,首次通过管中棒技术成功获得了连续掺Tm³⁺的BGG玻璃单模(SM)光纤。使用一根9.7厘米长的拉制态掺Tm³⁺的BGG玻璃SM光纤,在自制的1568nm光纤激光器激发下,展示了一台1.95μm的140mW全光纤激光器。