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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >High Repetition Rate Gigawatt Peak Power Fiber Laser Systems: Challenges, Design, and Experiment
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High Repetition Rate Gigawatt Peak Power Fiber Laser Systems: Challenges, Design, and Experiment

机译:高重复率千兆瓦峰值功率光纤激光器系统:挑战,设计和实验

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摘要

We review the main challenges and give design guidelines for high-peak-power high-average-power fiber-based chirped-pulse amplification (CPA) systems. It is clearly pointed out that the lowest order fiber nonlinearity (NL), namely the self-phase modulation, limits the scalability of high-energy ultrashort pulse fiber amplifiers. Therefore, a distinguished difference arises between the consequences of accumulated nonlinear phase originating from the pulse envelope and initial weak modulations, resulting in a strong recommendation to operate an amplification system as linearly as possible in order to generate high-contrast pulses. Low-NL rare-earth-doped fibers, such as the recently available designs of photonic crystal fibers, are the key element for successful peak power scaling in fiber laser systems. In this paper, we present a detailed analysis and optimization of the extraction characteristics in connection with the accumulated nonlinear phase in such extreme fiber dimensions. Consequently, millijoule pulse energy femtosecond pulses at repetition rates in the 100 kHz range have already been demonstrated experimentally in a Yb-fiber-based CPA system that has even further scaling potential.
机译:我们回顾了主要挑战,并针对高峰值功率,高平均功率,基于光纤的chi脉冲放大(CPA)系统给出了设计指南。明确指出,最低阶光纤非线性(NL),即自相位调制,限制了高能超短脉冲光纤放大器的可扩展性。因此,在源自脉冲包络的累积非线性相位的后果与初始弱调制之间会出现明显的差异,因此强烈建议尽可能线性地操作放大系统以生成高对比度脉冲。低NL掺杂稀土元素的光纤,例如最近可用的光子晶体光纤设计,是成功实现光纤激光器系统峰值功率定标的关键要素。在本文中,我们对与这种极端纤维尺寸中累积的非线性相相关的提取特性进行了详细的分析和优化。因此,已经在基于Yb纤维的CPA系统中通过实验证明了重复频率在100 kHz范围内的毫焦耳脉冲能量飞秒脉冲,该系统甚至具有进一步的缩放潜力。

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