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Generation measurement and amplification of 20-fs high-peak-power pulses from a regeneratively initiated self-mode-locked Ti:sa

机译:再生启动自锁模Ti:sa的20fs高峰值功率脉冲的生成测量和放大

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Abstract: rt the generation and measurement of 804 nm pulses with durations as short as 20 fs and with peak powers as high as 500 kW from a regeneratively initiated, self-mode-locked Ti:sapphire laser. Pulse duration is shown to decrease, and spectral content to increase, as intracavity power is increased. Control of intracavity focusing and a high-modulation-depth, acousto-optic modulator allow the intracavity power to be maximized. Cavity cubic phase error is minimized by correct design and placement of a GDD compensating prism pair. Methods for accurate determination of the pulse duration without assumption of pulse shape are discussed. Interferometric autocorrelation is accomplished with an interferometer which intrinsically balances dispersion and loss in each arm. Techniques for eliminating pulse distortions during amplification are also presented.!31
机译:摘要:用再生启动的自锁模Ti:蓝宝石激光器产生和测量804 nm脉冲,持续时间短至20 fs,峰值功率高达500 kW。随着腔内功率的增加,脉冲持续时间减少,频谱含量增加。腔内聚焦和高调制深度声光调制器的控制可以使腔内功率最大化。通过正确设计和放置GDD补偿棱镜对,可以将腔体立方相位误差降到最低。讨论了在不假设脉冲形状的情况下准确确定脉冲持续时间的方法。干涉式自相关通过干涉仪实现,该干涉仪本质上平衡每个臂中的色散和损耗。还介绍了消除放大过程中脉冲失真的技术!31

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