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Watt-level laser operation of Pr3+:YLF at 696 and 698 nm

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【作者】 曹伟航戴征东方润王中玉薛喻宸肖波许惠英蔡志平

【Author】 Weihang Cao;Zhengdong Dai;Run Fang;Zhongyu Wang;Yuchen Xue;Bo Xiao;Huiying Xu;Zhiping Cai;Department of Electronic Engineering, Xiamen University;Fujian Key Laboratory of Ultrafast Laser Technology and Applications, Xiamen University;School of Physics and Electronic Science, Guizhou Normal University;

【通讯作者】 蔡志平;

【机构】 Department of Electronic Engineering, Xiamen UniversityFujian Key Laboratory of Ultrafast Laser Technology and Applications, Xiamen UniversitySchool of Physics and Electronic Science, Guizhou Normal University

【摘要】 We report continuous-wave deep red lasers at 696.6 and 698.6 nm in a Pr3+:YLF crystal pumped by an InGaN laser diode. A Lyot filter was inserted into the cavity as a birefringent filter to select wavelength; the lasers at 696.6 and 698.6 nm were obtained with a maximum output power of 1.36 and 3.11 W, separately. To the best of our knowledge, the output powers of these two lasers are the highest to date, and this is the first scaling of the output power of the Pr3+:YLF laser to the watt level at around 696 nm. In addition, the corresponding theoretical analysis and simulation were carried out to explain the experimental phenomena.

【Abstract】 We report continuous-wave deep red lasers at 696.6 and 698.6 nm in a Pr3+:YLF crystal pumped by an InGaN laser diode. A Lyot filter was inserted into the cavity as a birefringent filter to select wavelength; the lasers at 696.6 and 698.6 nm were obtained with a maximum output power of 1.36 and 3.11 W, separately. To the best of our knowledge, the output powers of these two lasers are the highest to date, and this is the first scaling of the output power of the Pr3+:YLF laser to the watt level at around 696 nm. In addition, the corresponding theoretical analysis and simulation were carried out to explain the experimental phenomena.

【关键词】 Pr3+:YLF crystaldeep red lasersLyot filter
【Key words】 Pr3+:YLF crystaldeep red lasersLyot filter
【基金】 supported by the National Natural Science Foundation of China (No.61975168)
  • 【文献出处】 Chinese Optics Letters ,中国光学快报(英文版) , 编辑部邮箱 ,2023年04期
  • 【分类号】TN248
  • 【下载频次】5
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