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Nd:YVO_4自锁模皮秒激光器 被引量:2

Nd:YVO_4 self-mode-locked picosecond laser
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摘要 设计并研究了Nd:YVO_4自锁模皮秒激光器,探究了激光器的最佳锁模条件。观察并分析了自锁模皮秒激光器准周期锁模、倍周期锁模状态,研究并测量了结构紧凑的直腔自锁模激光器的输出特性。谐振腔为凹平直腔,Nd:YVO_4晶体作为激光增益介质和克尔介质,在未加其他锁模元件的情况下,实现了1064 nm高效率连续锁模脉冲激光输出。晶体距输入镜16 mm、腔长为90 mm时,对1 064 nm透过率分别为10%、20%、30%和50%的四种输出镜下激光器的输出特性进行了对比分析。对激光器进行优化设计,输出镜透过率为10%,泵浦功率为8 W时,激光器输出功率为2.76 W,斜效率高达43.2%,锁模脉冲重复频率为1.43 GHz,激光器实现了高效、稳定的连续锁模。 The Nd:YVO4self-mode-locked picosecond laser was designed and studied, and also the best conditions of the mode-locked lasers were explored. The period-doubling self-mode-locked pulses and the quasi-periodic self-mode-locked pulses in the picosecond laser were observed and analyzed, and the output characteristics of the self-mode-locked laser with straight cavity in compact structure was studied and measured. The resonant cavity was concave flat chamber, under the condition of no other clamping device, the Nd :YVO4crystal as a laser gain medium and Kerr medium, and the high efficiency continuous mode-locked 1 064 nm laser pulses were outputted. The Nd :YVO4laser crystal is 16 mm from the input mirror, and the cavity length is 90 mm. The four kinds transmittance in 1 064 nm of output mirror are 10%, 20%, 30% and 50%, respectively, meanwhile the output characteristics of the laser were analyzed in comparison with different output mirrors. By optimizing the design, when the transmittance in1 064 nm of output mirror is 10%, the output power of the laser is 2.76 W at 8 W incident pump power,and the slope efficiency is up to 43.2%, the repetition rate of mode-locked laser is 1.43 GHz, the laser achieves a high powered and stable continuous wavelength mode-locked.
出处 《红外与激光工程》 EI CSCD 北大核心 2016年第3期131-135,共5页 Infrared and Laser Engineering
基金 国家自然科学基金(61108021) 中央高校基本科研基金(2013JBM091)
关键词 自锁模 克尔效应 连续锁模 皮秒 self-mode-lock Kerr-effect CW-mode-lock picosecond
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参考文献10

  • 1Liang H C,Chen R C C,Huang Y J,et al.Compact efficient multi-GHz Kerr-lens mode-locked diode-pumped Nd:YVO4 laser[J].Optics Express,2008,16(25):21149-21154.
  • 2Chen W,Li Y,Zhang G,et al.Spontaneous picosecond pulse generation in a diode-pumped Nd:YAP laser[J].Optics Express,2013,21(21):25091-25098.
  • 3Tung J C,Wu T Y,Liang H C,et al.Precise measurement of the thermo-optical coefficients of various Nd-doped vanadates with an intracavity self-mode-locked scheme[J].Laser Physics,2014,24(3):035804.
  • 4Liu H,Huang J,Tang F,et al.Generation of 3.8-GHz picosecond pulses from a diode-pumped self-mode-locked Yb:YAG thin disk laser[J].Photonics Technology Letters,IEEE,2014,26(4):418-420.
  • 5Sato Y,Taira T.Comparative study on the spectroscopic properties of Nd:GdVO4 and Nd:YVO4 with hybrid process[J].Selected Topics in Quantum Electronics,IEEE Journal of,2005,11(3):613-620.
  • 6Sucha G,Bolton S R,Weiss S,et al.Period doubling and quasi-periodicity in additive-pulse mode-locked lasers[J].Optics Letters,1995,20(17):1794-1796.
  • 7Kalashnikov V L,Poloyko I G,Mikhailov V P,et al.Regular,quasi-periodic,and chaotic behavior in continuous-wave solid-state Kerr-lens mode-locked lasers[J].JOSA B,1997,14(10):2691-2695.
  • 8Herrmann J.Theory of Kerr-lens mode locking:role of self-focusing and radially varying gain[J].JOSA B,1994,11(3):498-512.
  • 9Li Z H,Peng J Y,Zheng Y.Self-mode-locked Nd:GdVO4 laser with long cavity[J].Optik-International Journal for Light and Electron Optics,2015,3(126):337-339.
  • 10Wu T W,Tsou C H,Tang C Y,et al.A high-power harmonically self-mode-locked Nd:YVO4 1.34μm laser with repetition rate up to 32.1 GHz[J].Laser Physics,2014,24(4):045803.

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