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低温GaAs被动调Q锁模Nd∶Gd0.42Y0.58VO4混晶激光器特性研究

Study on the Property of Passively Q-Switched Mode-Locked Nd∶Gd0.42Y0.58VO4 Mixed Crystal Laser with GaAs Absorber Grown at Low Temperature

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【作者】 卓壮姜其畅王勇刚苏艳丽李涛李建

【Author】 Zhuo Zhuang~(1,2) Jiang Qichang~1 Wang Yonggang~3 Su Yanli~1 Li Tao~1 Li Jian~11 College of Physics and Electronics,Shandong Normal University,Ji’nan 2500142 Shanda Lu’neng Information & Technology Co.Ltd,Shandong University,Ji’nan 2501003 Institute of Semiconductors,The Chinese Academy of Sciences,Beijing 100083

【机构】 山东师范大学物理与电子科学学院中国科学院半导体研究所山东师范大学物理与电子科学学院 济南250014山东大学山大鲁能信息科技有限公司济南250100济南250014北京100083

【摘要】 采用低温生长GaAs晶体作为被动饱和吸收体兼输出镜,实现了Nd∶Gd0.42Y0.58VO4混晶激光器的调Q锁模运转。研究了Nd∶Gd0.42Y0.58VO4激光器的基频运转特性。在输出镜透射率T=10%、腔长L=40 mm的情况下,当抽运功率为8.6 W时,获得激光输出功率3.78 W,光光转换效率为43.9%。并测量了Nd∶Gd0.42Y0.58VO4混晶被动调Q激光器的输出特性。实验结果表明激光器调Q运转阈值为2 W,当抽运功率为3.7 W时,激光器出现调Q锁模行为;当抽运功率为8.6 W时,激光器调Q锁模深度达70%以上,对应的脉冲包络重复频率为670 kHz,半峰全宽为180 ns,平均输出功率为1.35 W,光光转换效率为15.7%。

【Abstract】 Passively Q-switched mode-locking Nd∶Gd0.42Y0.58VO4 laser is successfully demonstrated by using a piece of GaAs crystal grown at low temperature(LT-GaAs) as the passively saturated absorber as well as the output coupler.The fundamental properties of Nd∶Gd0.42Y0.58VO4 laser are investigated.At transmission of 10% and cavity length of 40 mm,the maximum average output power of 3.78 W is obtained when the incident laser pumping power is 8.6 W,which corresponds to an optical-optical conversion efficiency of 43.9%.The output performance is then tested for the passively Q-switched Nd∶Gd0.42Y0.58VO4 mixed crystal laser.The threshold power for Q-switching and Q-switching mode-locked(QML) are about 2 W and 3.7 W respectively.At the incident laser pumping power of(8.6 W,) Q-switching mode-locking pulse with modulation depth more than 70% is available.The Q-switched envelope train with repetition rate of 670 kHz is obtained with pulse duration of 180ns.The average output power and the optical-optical conversion efficiency are 1.35 W and 15.7%,respectively.

【基金】 山东省科技厅科技攻关计划(031080125)资助课题
  • 【文献出处】 光学学报 ,Acta Optica Sinica , 编辑部邮箱 ,2006年01期
  • 【分类号】TN248
  • 【被引频次】17
  • 【下载频次】108
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