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Time dependent Doppler shifts in high-order harmonic generation in intense laser interactions with solid density plasma and frequency chirped pulses

机译:在与固体密度等离子体和frequency脉冲的强烈激光相互作用中,高次谐波产生中的时间相关多普勒频移

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摘要

High order harmonic generation from solid targets is a compelling route to generating intense attosecond or even zeptosecond pulses. However, the effects of ion motion on the generation of harmonics have only recently started to be considered. Here, we study the effects of ion motion in harmonics production at ultrahigh laser intensities interacting with solid density plasma. Using particle-in-cell simulations, we find that there is an optimum density for harmonic production that depends on laser intensity, which scales linearly with a(0) with no ion motion but with a reduced scaling if ion motion is included. We derive a scaling for this optimum density with ion motion and also find that the background ion motion induces Doppler red-shifts in the harmonic structures of the reflected pulse. The temporal structure of the Doppler shifts is correlated to the envelope of the incident laser pulse. We demonstrate that by introducing a frequency chirp in the incident pulse we are able to eliminate these Doppler shifts almost completely. (C) 2015 AIP Publishing LLC.
机译:从固体目标产生高次谐波是产生强烈的阿秒或什至秒脉冲的引人注目的途径。但是,离子运动对谐波产生的影响只是最近才开始考虑。在这里,我们研究了离子运动在与固体密度等离子体相互作用的超高激光强度下产生谐波的影响。通过使用单元中的粒子模拟,我们发现谐波产生的最佳密度取决于激光强度,该密度在无离子运动的情况下与a(0)成线性比例关系,而在包含离子运动的情况下则具有减小的比例关系。我们用离子运动得出了此最佳密度的标度,并且还发现背景离子运动在反射脉冲的谐波结构中引起多普勒红移。多普勒频移的时间结构与入射激光脉冲的包络线相关。我们证明,通过在入射脉冲中引入频率线性调频,我们几乎可以完全消除这些多普勒频移。 (C)2015 AIP Publishing LLC。

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