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All-fiber linearly polarized laser oscillator by fiber coiling loss control 被引量:2
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作者 Yu-Sheng Huang qi-rong xiao +4 位作者 Dan Li Ze-Hui Wang Xue-Jiao Wang Ping Yan Ma-Li Gong 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第4期305-308,共4页
In this paper,we demonstrate an all-fiber linearly polarized fiber laser oscillator.The single polarization of the oscillator is achieved through the careful designing of the active fiber coiling.The relationship betw... In this paper,we demonstrate an all-fiber linearly polarized fiber laser oscillator.The single polarization of the oscillator is achieved through the careful designing of the active fiber coiling.The relationship between fiber coiling diameter and polarization extinction ratio and optical efficiency is studied,whose results lead to an optimized system.The thermal management of the oscillator is also refined,which allows the oscillator to reach a maximum output power of44.1 W with an optical-to-optical efficiency of 57.9%.A high average polarization extinction ratio of 21.6 d B is achieved during a 2-hour stability test.The oscillator also owns a narrow 3-d B bandwidth of 0.1 nm,as well as near-diffraction-limit beam quality of M^2~ 1.14. 展开更多
关键词 fiber laser oscillator linearly polarized ALL-FIBER
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Internal Features of Fiber Fuse in a Yb-Doped Double-Clad Fiber at 3 kW 被引量:2
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作者 qi-rong xiao Jia-Ding Tian +5 位作者 Yu-Sheng Huang Xue-Jiao Wang Ze-Hui Wang Dan Li Ping Yan Ma-Li Gong 《Chinese Physics Letters》 SCIE CAS CSCD 2018年第5期29-33,共5页
We study internal features of fiber fuse in a Yb-doped double-clad fiber. The samples of fiber fuse are acquired at the power level of 3 kW in an all-fiber forward-pumped master oscillator power amplifier configuratio... We study internal features of fiber fuse in a Yb-doped double-clad fiber. The samples of fiber fuse are acquired at the power level of 3 kW in an all-fiber forward-pumped master oscillator power amplifier configuration fiber laser that is built specially for fiber fuse analyses. At this high power level, drastic refractive-index redistribution arises in an expended high refractive index area around the bullet-shaped voids of fiber fuse. Electron spin resonance analyses on post-fiber-fuse samples of the Yb-doped double-clad fiber indicate rising Frenkel defect concentration, meanwhile showing a new resonance center that is different from the ones of the Ge-doped fibers studied previously. This new resonance center probably suggests the generation of Al-oxygen hole center, a kind of defect formed during the catastrophic fuse process. 展开更多
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