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Efficiency optimization of the square pulse pumped terawatt level Optical Parametric Chirped Pulse Amplifier

机译:方脉冲泵浦兆瓦级光参量Chi脉冲放大器的效率优化

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Numerical simulations and analysis of a very efficient and stable non-collinear Optical Parametric Chirped Pulse Amplification (OPCPA) femtosecond system are presented. The system is optimized for a long (nanosecond), rectangular temporal profile and a flat-top spatial profile of the pump laser pulse. We show that a two stage system consisting of a multipass preamplifier and a time-sheared power amplifier operating around 850 nm and pumped by a 532 nm pulse can amplify pulses directly from a femtosecond oscillator up to multi-terawat levels with quantum efficiencies as high as 0.9. We also discuss practical schemes of the few-cycle multi-terawatt OPCPA systems employing different nonlinear crystals. The results of the Monte-Carlo simulations are used to balance the stability and efficiency of the parametric amplifier system.
机译:提出了一个非常有效和稳定的非共线光学参量Chi脉冲飞秒(OPCPA)飞秒系统的数值模拟和分析。该系统针对泵浦激光脉冲的长(纳秒)矩形时间轮廓和平顶空间轮廓进行了优化。我们展示了一个由多通道前置放大器和在850 nm附近运行并由532 nm脉冲泵送的时间分切功率放大器组成的两级系统可以将飞秒振荡器产生的脉冲直接放大到多兆瓦级,量子效率高达0.9。我们还将讨论采用不同非线性晶体的几周期多兆瓦OPCPA系统的实用方案。蒙特卡洛模拟的结果用于平衡参数放大器系统的稳定性和效率。

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