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Optimization of passively mode-locked quasi-continuously diode-pumped Nd:GdVO_4 laser in bounce geometry

机译:反弹几何中无源锁模准连续二极管泵浦Nd:GdVO_4激光器的优化

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In this paper the operation of pulsed diode-pumped Nd:GdVO_4 laser oscillator in bounce geometry passively mode-locked using semiconductor saturable absorber mirror (SAM), generating microjoule level picosecond pulses at wavelength of 1063 nm, is reported. Optimization of the output coupling for generation either Q-switched mode locked pulse trains or cavity dumped single pulses with maximum energy was performed, which resulted in extraction of single pulses as short as 10 ps and energy of 20 μJ. In comparison with the previous results obtained with this Nd:GdVO_4 oscillator and saturable absorber in transmission mode, the achieved pulse duration is five times shorter. Using different absorbers and parameters of single pulse extraction enables generation of the pulses with duration up to 100 ps with the energy in the range from 10 to 20 μJ.
机译:本文报道了使用半导体可饱和吸收镜(SAM)被动地锁模反弹几何结构中的脉冲二极管泵浦Nd:GdVO_4激光振荡器的操作,该激光器在1063 nm波长处产生了微焦耳级的皮秒脉冲。对输出耦合进行了优化,以生成具有最大能量的Q开关模式锁定脉冲序列或腔倾倒的单个脉冲,从而提取了短至10 ps的单个脉冲和20μJ的能量。与该Nd:GdVO_4振荡器和饱和吸收器在传输模式下获得的先前结果相比,所获得的脉冲持续时间短了五倍。使用不同的吸收器和单脉冲提取参数可以以100 ps至20μJ的能量产生持续时间高达100 ps的脉冲。

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