材料科学
光学
光纤激光器
激光束质量
光子晶体光纤
单模光纤
激光器
布里渊散射
模式音量
渐变折射率纤维
光纤
激光功率缩放
双包层光纤
保偏光纤
光电子学
光纤传感器
物理
激光束
作者
Wei Liu,Wei Liu,Yu Deng,Yisha Chen,Yang Huan,Qi Chen,Junjie Zheng,Hu Xiao,Zilun Chen,Zhiyong Pan,Pengfei Ma,Zefeng Wang,Lei Si,Shanhui Xu,Jinbao Chen
标识
DOI:10.1038/s41377-025-01956-1
摘要
High-power single-frequency fiber lasers with diffraction-limited spots are indispensable for a wide range of photonic applications and are particularly in advanced detection and sensing technologies. However, the simultaneous achievement of kilowatt-level output power and diffraction-limited beam quality has remained elusive in all reported single-frequency fiber laser systems to date, primarily due to limitations imposed by the stimulated Brillouin scattering (SBS) effect and transverse mode instability (TMI) effect. In this study, we demonstrate the design and manufacturing of an ultra-low numerical aperture (NA) functional Yb-doped fiber featuring a bat-type refractive index distribution, specifically engineered for single-frequency laser amplification. In the fabrication, we implemented multiple chelate gas filling and particle deposition iterations, leading to an active fiber with a bat-type refractive index distribution. The unique capabilities of this large mode area and high-order modes leakage fiber (HOMLF) were demonstrated by stably amplifying the single-frequency laser with more than one kilowatt output power and near single mode beam quality (Mx2 = 1.10, Mx2 = 1.18) for the first time. This fiber design advances the leap forward in single-frequency fiber lasers, which could contribute as a novel and efficient laser amplification technique for the next generation of gravitational wave detection systems.
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