材料科学
光子晶体光纤
光纤激光器
激光器
光电子学
光学
光纤
纤维
兴奋剂
复合材料
波长
物理
作者
Yun Chen,Nan Zhao,Jiantao Liu,Yang Xiao,Mengmeng Zhu,Ke Liu,Guiyao Zhou,Zhiyun Hou,Changming Xia,Yi Zheng,Zhenqiang Chen
摘要
In this paper it is demonstrated that laser sintering technology combined with fiber fabrication by the stack and draw method can be used to realize efficient fiber lasers. More precisely, a ytterbium-doped large-mode-area photonic crystal fiber with a core obtained by laser sintering technology is studied. Electron probe micro-analysis (EPMA) mapping reveals that the elements Yb, Al and Si are distributed throughout the fiber core with an excellent homogeneity. The laser performance demonstrates a high laser slope efficiency of 81.03 % for a laser emission at 1035 nm and a low power threshold of 3.04 W within only 1 m of fiber. The optical and spectroscopic properties of the fiber are studied, together with the sensitivity of the fiber to photodarkening (PD). The results make laser sintering technology interesting for the realization of fibers with large core and complex designs toward high-power fiber lasers.
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