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Probing warm dense matter using femtosecond X-ray absorption spectroscopy with a laser-produced betatron source

机译:使用飞秒X射线吸收光谱和激光产生的电子感应加速器源探测温暖的稠密物质

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摘要

Exploring and understanding ultrafast processes at the atomic level is a scientific challenge. Femtosecond X-ray absorption spectroscopy (XAS) arises as an essential experimental probing method, as it can simultaneously reveal both electronic and atomic structures, and thus potentially unravel their nonequilibrium dynamic interplay which is at the origin of most of the ultrafast mechanisms. However, despite considerable efforts, there is still no femtosecond X-ray source suitable for routine experiments. Here we show that betatron radiation from relativistic laser?plasma interaction combines ideal features for femtosecond XAS. It has been used to investigate the nonequilibrium dynamics of a copper sample brought at extreme conditions of temperature and pressure by a femtosecond laser pulse. We measured a rise-time of the electron temperature below 100?fs. This experiment demonstrates the great potential of the table-top betatron source which makes possible the investigation of unexplored ultrafast processes in manifold fields of research.
机译:在原子水平上探索和理解超快过程是一项科学挑战。飞秒X射线吸收光谱(XAS)作为一种重要的实验探测方法而出现,因为它可以同时揭示电子结构和原子结构,因此有可能揭示它们的非平衡动态相互作用,这是大多数超快机制的起源。然而,尽管付出了巨大的努力,仍然没有适合常规实验的飞秒X射线源。在这里,我们证明相对论激光等离子体相互作用的电子感应加速器辐射结合了飞秒XAS的理想特征。它已用于研究飞秒激光脉冲在极端温度和压力条件下带来的铜样品的非平衡动力学。我们测量了电子温度低于100?fs的上升时间。该实验证明了台式电子感应加速器的巨大潜力,这使人们有可能在众多研究领域中探索未探索的超快过程。

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