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首页> 外文期刊>Physical review letters >Probing Hot and Dense Laser-Induced Plasmas with Ultrafast XUV Pulses
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Probing Hot and Dense Laser-Induced Plasmas with Ultrafast XUV Pulses

机译:利用超快XUV脉冲探测热致密激光诱导的等离子体

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摘要

In this Letter, we demonstrate the instantaneous creation of a hot solid-density plasma generated by focusing an intense femtosecond, high temporal contrast laser on an ultrathin foil (100 nm) in the 10~(18) W/cm~2 intensity range. The use of high-order harmonics generated in a gas jet, providing a probe beam of sufficiently short wavelengths to penetrate such a medium, enables the study of the dynamics of this plasma on the 100 fs time scale. The comparison of the transmission of two successive harmonics permits us to determine the electronic density and the temperature with accuracies better than 15%, never achieved up to this date in the regime of laser pulses at relativistic intensity.
机译:在这封信中,我们演示了通过在10〜(18)W / cm〜2强度范围内的超薄箔片(100 nm)上聚焦强飞秒,高时间对比度激光而瞬时产生的热固体密度等离子体。利用气体喷射中产生的高次谐波,提供足够短的波长的探测光束以穿透这种介质,可以研究这种等离子体在100 fs时间尺度上的动力学。通过比较两个连续谐波的透射率,我们可以确定电子密度和温度,其精度优于15%,这是迄今为止相对论强度的激光脉冲范围内从未达到的。

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