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Wavelength-Tunable Single Frequency Ytterbium-Doped Fiber Laser with Loop Mirror Filter

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【作者】 陆宝乐黄圣鸿尹默娟陈浩伟任兆玉白晋涛

【Author】 LU Bao-Le;HUANG Sheng-Hon;YIN Mo-Juan;CHEN Hao-Wei;REN Zhao-Yu;BAI Jin-Tao;National Key Laboratory of Photoelectric Technology and Functional Materials(Culture Base),Institute of Photonics and Photon-Technology,Northwest University;Shaanxi Engineering Technology Research Center for Solid State Lasers and Application;Institute of Photonics and Photon-technology,Provincial Key Laboratory of Photo-electronic Technology,Northwest University;Department of Physics,Northwest University;

【机构】 National Key Laboratory of Photoelectric Technology and Functional Materials(Culture Base),Institute of Photonics and Photon-Technology,Northwest UniversityShaanxi Engineering Technology Research Center for Solid State Lasers and ApplicationInstitute of Photonics and Photon-technology,Provincial Key Laboratory of Photo-electronic Technology,Northwest UniversityDepartment of Physics,Northwest University

【摘要】 By using a loop mirror filter,a novel wavelength-tunable single-frequency ytterbium-doped fiber laser is developed to select single longitudinal modes in a linear cavity.The output wavelength could be tuned 2.4 nm intervals range from 1063.3 to 1065.7nm with the temperature change of the fiber Bragg grating.The maximum output power could reach 32mW while the pump power increases to 120mW.The corresponding optical-to-optical conversion efficiency is 26.7%and the slope efficiency is 33.9%,respectively.The output power fluctuation is below 2%,and its highest signal-to-noise ratio is 60 dB.

【Abstract】 By using a loop mirror filter,a novel wavelength-tunable single-frequency ytterbium-doped fiber laser is developed to select single longitudinal modes in a linear cavity.The output wavelength could be tuned 2.4 nm intervals range from 1063.3 to 1065.7nm with the temperature change of the fiber Bragg grating.The maximum output power could reach 32 mW while the pump power increases to 120 mW.The corresponding optical-to-optical conversion efficiency is 26.7%and the slope efficiency is 33.9%,respectively.The output power fluctuation is below 2%,and its highest signal-to-noise ratio is 60 dB.

【基金】 Supported by the International Cooperation Projects of Ministry of Science and Technology under Grant No 2012DFB10120;the National Natural Science Foundation of China under Grant No 61177059
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2015年04期
  • 【分类号】TN713;TN248
  • 【下载频次】47
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