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基于多层石墨烯可饱和吸收体的被动调Q Ho∶YAG激光器
引用本文:崔铮,陈毅,姚宝权,段小明,申英杰,申作春,鲁建业,戴通宇.基于多层石墨烯可饱和吸收体的被动调Q Ho∶YAG激光器[J].发光学报,2016,37(6):696-700.
作者姓名:崔铮  陈毅  姚宝权  段小明  申英杰  申作春  鲁建业  戴通宇
作者单位:哈尔滨工业大学 可调谐激光技术国家级重点实验室, 黑龙江 哈尔滨 150001
基金项目:国家自然科学基金(61308009;61405047),中国博士后科学基金(2015M570290),哈尔滨工业大学科研创新基金(HIT. NSRIF.2014044;HIT. NSRIF.2015042),黑龙江省杰出青年科学基金(JQ201310),黑龙江省博士后科学基金(LBH-Z14085)
摘    要:报道了2μm被动调Q的Ho∶YAG激光器,该激光器采用Tm~(3+)光纤激光器作为泵浦源,使用多层石墨烯作为可饱和吸收体。在连续波激光输出模式下,当泵浦功率为4.2 W时,获得了750 mW激光输出,输出激光中心波长为2.09μm,斜率效率为29.6%。在连续波激光器谐振腔中插入多层石墨烯可饱和吸收体并调整谐振腔,获得了脉冲激光输出。当泵浦功率为4.2 W时,获得最小脉冲宽度3.1μs、重复频率66.6 kHz的脉冲激光输出,其最大平均输出功率为170 mW,斜率效率为12.6%,光束质量因子M_x~2=1.15,M_y~2=1.12。

关 键 词:固体激光器  被动调Q  Ho:YAG  多层石墨烯
收稿时间:2016-01-30

Passively Q-switched Ho︰YAG Laser with Multilayer Graphene-based Saturable Absorber
CUI Zheng,CHEN Yi,YAO Bao-quan,DUAN Xiao-ming,SHEN Ying-jie,SHEN Zuo-chun,LU Jian-ye,DAI Tong-yu.Passively Q-switched Ho︰YAG Laser with Multilayer Graphene-based Saturable Absorber[J].Chinese Journal of Luminescence,2016,37(6):696-700.
Authors:CUI Zheng  CHEN Yi  YAO Bao-quan  DUAN Xiao-ming  SHEN Ying-jie  SHEN Zuo-chun  LU Jian-ye  DAI Tong-yu
Institution:National Key Lab of Tunable Laser Technology, Harbin Institute of Technology, Harbin 150001, China
Abstract:A 2 μm passively Q-switched ( PQS) Ho∶YAG laser pumped by a Tm3+ fiber laser was demonstrated with a multilayer graphene as the saturable absorber. In the continuous wave ( CW) mode, a 2. 09 μm laser with the output power of 750 mW was obtained at the incident pump power of 4. 2 W, corresponding to the slope efficiency of 29. 6%. By inserting a multilayer graphene as the saturable absorber and adjusting the cavity, we achieved passively Q-switched laser pulses. The minimum pulse duration was obtained at the pump power of 4 . 2 W with the repetition rate of 66 . 6 kHz and the pulse width of 3. 1 μs. The maximum output power of 170 mW was achieved, corre-sponding to the slope efficiency of 12. 6%. The beam quality factors are M2x =1. 15 and M2y =1. 12, respectively.
Keywords:solid-state lasers  passively Q-switched  Ho∶YAG  multilayer graphene
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