强极紫外辐射的偏转与整形
原子物理
2025-03-21 v1
摘要
控制短波长辐射以研究和操纵量子系统中超快动力学的目标,与高次谐波产生和自由电子激光产生的极紫外 (XUV) 及 X 射线光源日益增多的发展相伴演进。在此,我们提出一种基于强 XUV 激光束穿过光学厚共振靶的 XUV 空间-光谱相位调制器,它在垂直于和沿激光传播方向上均引入了共振附近的色散分布变化。与原始光束相比,产生的偶极辐射在远场中经历了光谱整形并变得更具发散性。作为实验演示,在汉堡自由电子激光器 (FLASH) 获得的远场光谱中,由强 XUV 诱导的双峰离轴结构显示了潜在的 XUV 驱动 Rabi 动力学和共振脉冲传播效应的迹象。本工作突出了强激光束穿过共振介质时发生的一种普遍现象。
引用
@article{arxiv.2503.16344,
title = {Redirection and Reshaping of Intense Extreme-Ultraviolet Radiation},
author = {Yu He and Alexander Magunia and Harijyoti Mandal and Muwaffaq Ali Mourtada and Carlo Kleine and Arikta Saha and Marc Rebholz and Gergana D. Borisova and Lina Hedewig and Hannes Lindenblatt and Florian Trost and Ulrike Frühling and Christina C. Papadopoulou and Elisa Appi and Stefan Düsterer and Tino Lang and Skirmantas Alisaukas and Christoph M. Heyl and Steffen Palutke and Markus Braune and Christina Bömer and Dietrich Krebs and Doriana Vinci and Philip Mosel and Peer Biesterfeld and Ingmar Hartl and Robert Moshammer and Milutin Kovacev and Kiyoshi Ueda and Mette B. Gaarde and Christian Ott and Thomas Pfeifer},
journal= {arXiv preprint arXiv:2503.16344},
year = {2025}
}