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Multi-keV picosecond x-ray source development from ultra-intense kHz laser-cluster interaction

机译:超强度KHz激光簇交互的多kev PicoSecond X射线源开发

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Multi-keV X-ray source from intense laser-cluster interaction was experimentally studied. A special effort was first made in order to characterize the cluster target. K-shell emission of Argon clusters (around 3 keV) was then studied when irradiated by kHz, 30 fs, 10~(17) W.cm~(-2) laser pulses. High-resolution spectra are presented, in this spectral range, as a function of laser duration and average cluster size. Signature of very highly charged ions (Ar~(16+)) was observed with relatively low intensity laser pulses (few 10~(15) W.cm~(-2)). This feature is not yet clearly understood nor reproduced by simulations. Optimal laser pulse duration was observed for X-ray production, depending on the cluster size. For the first time to our knowledge, the duration of K-shell X-ray bursts was measured with a home-made streak camera to be on the picosecond scale.
机译:从实验研究了来自激光激光簇相互作用的多keV X射线源。首先进行特殊努力,以便为集群目标表征。然后通过KHz,30 FS,10〜(17)激光脉冲照射时研究氩簇(约3KeV)的氩簇(约3keV)。在该光谱范围内提出了高分辨率光谱,作为激光持续时间和平均簇大小的函数。用相对低强度激光脉冲观察到非常高电荷的离子(AR〜(16 +))的签名(少数10〜(15)Wmm〜(-2))。尚未清楚地理解此功能也不被模拟再现。根据簇大小,观察到X射线产生的最佳激光脉冲持续时间。首次了解我们的知识,用自制的条纹相机测量k-shell X射线​​突发的持续时间,以在皮秒上缩放。

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