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作 者:Xiao-Chuan Meng Lu Li Nai-Zhang Sun Ze Xue Qi Liu Han Ye Wen-Jun Liu
机构地区:[1]State Key Laboratory of Information Photonics and Optical Communications,School of Science,Beijing University of Posts and Telecommunications,Beijing 100876,China [2]School of Science,Xi'an University of Posts and Telecommunications,Xi'an 710121,China [3]Hebei Key Laboratory of Physics and Energy Technology,North China Electric Power University,Baoding 071000,China
出 处:《Chinese Physics Letters》2023年第12期46-50,共5页中国物理快报(英文版)
基 金:supported by the National Key Research and Development Program of China(Grant No.2022YFB4601101);the Beijing Natural Science Foundation(Grant No.JQ21019);the National Natural Science Foundation of China(Grant Nos.11975001,11974003,12075034,12075190,and 12261131495);the New Star Project of Science and Technology of Shaanxi Province(Grant No.2022KJXX-69);the BUPT Excellent Ph.D.Students Foundation(Grant No.CX2022121);the Hebei Key Laboratory of Physics and Energy Technology(Grant No.HBKLPET2023_03)。
摘 要:Tungsten sulphoselenide(WSSe) alloys, belonging to the transition metal dichalcogenide family, have attracted significant interest in the area of optoelectronics because of their unique optical and electronic properties.However, there has been a dearth of sufficient research on the saturable absorption features and ultrafast lasers applications. Herein, we fabricated a WSSe-microfiber saturable absorber(SA) based on WSSe nanosheets prepared by liquid exfoliation technique. The SA provided a saturation intensity of a modulation depth of 27.95%and a nonsaturable loss of 21.34%. To investigate the potential applications of WSSe in ultrafast photonics, the prepared WSSe-microfiber was incorporated into an Er-doped fiber laser ring cavity. The results demonstrated that the WSSe-based SA successfully generated mode-locking laser pulses with a remarkably short pulse width of 231 fs. Furthermore, the output power of this ultrafast fiber laser reached an impressive value of 15.68 mW.These findings provide valuable views into the unique features of WSSe alloys in the areas of ultrafast optics and develop recipes for SA in ultrafast fiber lasers.
关 键 词:technique FIBER ABSORBER
分 类 号:TN248[电子电信—物理电子学]
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