Femtosecond structural probing of warm dense matter with betatron x-ray source

F. Dorchies, A. Grolleau, Sylvain Briand, J. Gautier, P. Renaudin, V. Recoules, K. Ta Phuoc, L. Lecherbourg
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Abstract

Exploring and understanding ultrafast processes at the atomic level is a scientific challenge. Femtosecond X-ray Absorption Near-Edge Spectroscopy (XANES) arises as an essential experimental probing method, as it can simultaneously reveal both electronic and atomic structures, and thus potentially unravel their non-equilibrium dynamic interplay which is at the origin of most of the ultrafast mechanisms. The key point of this investigation is the achievement of a femtosecond X-ray source suitable for routine experiments. This paper will show the progressive development and improvement of such laser-plasma-based X-ray sources, starting from the picosecond down to the femtosecond scale. Time-resolved XANES measurements have been achieved and interpreted using ab initio quantum molecular dynamics simulations. This diagnostic was used to shed new light on the non-equilibrium physics involved in various materials. This paper will focus on results devoted to the non-equilibrium dynamics of a copper foil brought from solid to warm dense matter regime, by the use of a femtosecond laser pulse. Particular emphasis will be given to the recent study of the ultrafast electronic transport, which was revealed by the femtosecond time resolution.
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用电子加速器x射线源对热致密物质的飞秒结构探测
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射线吸收近边光谱(XANES)是一种重要的实验探测方法,因为它可以同时揭示电子和原子结构,从而潜在地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。本课题的重点是研制出适合于常规实验的飞秒x射线源。本文将展示这种基于激光等离子体的x射线源的逐步发展和改进,从皮秒到飞秒尺度。时间分辨XANES测量已经实现,并解释使用从头算量子分子动力学模拟。这一诊断用于揭示涉及各种材料的非平衡物理。本文将重点讨论利用飞秒激光脉冲将铜箔从固体带到温暖致密物质状态的非平衡动力学结果。本文将特别强调飞秒时间分辨率所揭示的超快电子输运的最新研究。
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