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Atomic physics of relativistic high contrast laser-produced plasmas in experiments on Leopard laser facility at UNR

机译:相对论性高对比度激光产生等离子体的原子物理学,在UNR的豹激光设备上进行实验

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摘要

The results of the recent experiments focused on study of x-ray radiation from multicharged plasmas irradiated by relativistic (I > 10 ~(19) W/cm ~2) sub-ps laser pulses on Leopard laser facility at NTF/UNR are presented. These shots were done under different experimental conditions related to laser pulse and contrast. In particular, the duration of the laser pulse was 350 fs or 0.8 ns and the contrast was varied from high (10 ~(-7)) to moderate (10 ~(-5)). The thin laser targets (from 4 to 750 μm) made of a broad range of materials (from Teflon to iron and molybden to tungsten and gold) were utilized. Using the x-ray diagnostics including the high-precision spectrometer with resolution R ~ 3000 and a survey spectrometer, we have observed unique spectral features that are illustrated in this paper. Specifically, the observed L-shell spectra for Fe targets subject to high intensity lasers (~10 ~(19) W/cm ~2) indicate electron beams, while at lower intensities (~10 ~(16) W/cm ~2) or for Cu targets there is much less evidence for an electron beam. In addition, K-shell Mg features with dielectronic satellites from high-Rydberg states, and the new K-shell F features with dielectronic satellites including exotic transitions from hollow ions are highlighted.
机译:本文介绍了最近的实验结果,重点研究了在NTF / UNR的Leopard激光装置上由相对论(I> 10〜(19)W / cm〜2)亚ps激光脉冲辐照的多电荷等离子体的X射线辐射。这些镜头是在与激光脉冲和对比度相关的不同实验条件下完成的。特别是,激光脉冲的持续时间为350 fs或0.8 ns,对比度从高(10〜(-7))到中度(10〜(-5))不等。使用了由多种材料(从铁氟龙到铁,从钼到钨和金)制成的薄激光靶(从4到750μm)。使用X射线诊断程序(包括分辨率为R〜3000的高精度光谱仪和调查光谱仪),我们观察到了本文阐述的独特光谱特征。具体而言,在高强度激光(〜10〜(19)W / cm〜2)下观察到的铁靶的L壳光谱表示电子束,而在较低强度(〜10〜(16)W / cm〜2)下的电子束显示为电子束。或对于铜靶,几乎没有证据表明存在电子束。此外,重点介绍了来自高里德堡州的双电子卫星的K壳Mg特征,以及包括中空离子的奇异跃迁的双电子卫星的新K-shell F特征。

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