Mazza T, Karamatskou A, Ilchen M, Bakhtiarzadeh S, Rafipoor A J, O'Keeffe P, Kelly T J, Walsh N, Costello J T, Meyer M, Santra R
European XFEL GmbH, Albert-Einstein-Ring 19, 22761 Hamburg, Germany.
1] Center for Free-Electron Laser Science, DESY, Notkestrasse 85, 22607 Hamburg, Germany [2] Department of Physics, University of Hamburg, Jungiusstrasse 9, 20355 Hamburg, Germany.
Nat Commun. 2015 Apr 9;6:6799. doi: 10.1038/ncomms7799.
Collective behaviour is a characteristic feature in many-body systems, important for developments in fields such as magnetism, superconductivity, photonics and electronics. Recently, there has been increasing interest in the optically nonlinear response of collective excitations. Here we demonstrate how the nonlinear interaction of a many-body system with intense XUV radiation can be used as an effective probe for characterizing otherwise unresolved features of its collective response. Resonant photoionization of atomic xenon was chosen as a case study. The excellent agreement between experiment and theory strongly supports the prediction that two distinct poles underlie the giant dipole resonance. Our results pave the way towards a deeper understanding of collective behaviour in atoms, molecules and solid-state systems using nonlinear spectroscopic techniques enabled by modern short-wavelength light sources.
集体行为是多体系统的一个特征,对磁学、超导、光子学和电子学等领域的发展至关重要。最近,人们对集体激发的光学非线性响应越来越感兴趣。在这里,我们展示了多体系统与强极紫外辐射的非线性相互作用如何用作一种有效的探针,以表征其集体响应中其他未解决的特征。选择氙原子的共振光电离作为案例研究。实验与理论之间的出色吻合有力地支持了这样的预测,即巨偶极共振有两个不同的极点。我们的结果为利用现代短波长光源实现的非线性光谱技术更深入地理解原子、分子和固态系统中的集体行为铺平了道路。