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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Numerical simulation of subnanosecond single mode-locking pulse generation in a doubly Q-switched and mode-locked green laser with EO and Cr4+:YAG
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Numerical simulation of subnanosecond single mode-locking pulse generation in a doubly Q-switched and mode-locked green laser with EO and Cr4+:YAG

机译:具有EO和Cr4 +:YAG的双Q开关和锁模绿色激光器中亚纳秒单锁模脉冲产生的数值模拟

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摘要

Under the Gaussian spatial distribution approximation, the coupled rate equations for a diode-pumped, dual-loss- modulated, Q-switched, and mode-locked (QML) green laser with EO and Cr4+ :YAG are derived. The numerical simulation results show that the pulse width of the Q-switched envelope is related to the pump power, repetition rate of EO, initial transmission of Cr4+:YAG, and the stimulated emission section of the gain medium. By designing the related parameters well, the pulse width of the Q-switched envelope can be greatly compressed to shorter than the cavity roundtrip transmit time, i.e., the interval of two neighboring mode-locking pulses; then subnanosecond single mode-locking pulses with low repetition rate, high pulse energy, and high stability can be obtained. The generation conditions of subnanosecond single mode-locking pulses per envelope in a dual-loss-modulated QML Nd:Lu0.15Y0.85VO4 green laser with EO and Cr4+:YAG are experimentally demonstrated and found to be in agreement with the theoretical results. (C) 2015 Optical Society of America
机译:在高斯空间分布近似下,导出了具有EO和Cr4 +:YAG的二极管泵浦,双损耗调制,Q开关和锁模(QML)绿光激光器的耦合速率方程。数值模拟结果表明,调Q包络的脉冲宽度与泵浦功率,EO的重复率,Cr4 +:YAG的初始透射率以及增益介质的受激发射部分有关。通过很好地设计相关参数,可以大大压缩调Q开关包络的脉冲宽度,使其比腔体往返传输时间短,即两个相邻锁模脉冲的间隔。从而可以得到重复频率低,脉冲能量高,稳定性高的亚纳秒单锁模脉冲。实验证明了具有EO和Cr4 +:YAG的双损耗调制QML Nd:Lu0.15Y0.85VO4绿色激光器中每个包络的亚纳秒单锁模脉冲的产生条件,并且与理论结果相符。 (C)2015年美国眼镜学会

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