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Plasma-based creation of short light pulses: analysis and simulation of amplification and focusing

机译:基于等离子体的短脉冲的产生:放大和聚焦的分析和仿真

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Plasmas can serve as damage-less optics for amplifying and focusing light pulses to very high intensity. This provides a way to overcome the limitations of solid-state optical materials as a damage threshold in the classical sense is absent. The amplification process relies on parametric processes in plasmas exploiting the coupling of transverse electromagnetic waves to a longitudinal plasma wave. The plasma response can either be an electron plasma wave (stimulated Raman scattering), an ion-acoustic wave (stimulated Brillouin scattering) or a more complicated non-resonant feature in the case of very short pulses.
机译:等离子体可以用作损坏的光学光学器件,用于放大和将光脉冲聚焦到非常高的强度。这提供了一种方法来克服固态光学材料的局限性,因为不存在经典意义上的损伤阈值。扩增过程依赖于等离子体中的参数过程利用横向电磁波的耦合到纵向等离子体波。等离子体响应可以是电子等离子体波(刺激拉曼散射),在非常短的脉冲的情况下,离子声波(刺激的布里渊散射)或更复杂的非谐振特征。

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