Max-Planck-Institut für Kernphysik, Saupfercheckweg 1, 69117 Heidelberg, Germany.
Institute for Theoretical Physics, Vienna University of Technology, Wiedner Hauptstraße 8, 1040 Vienna, Austria.
Science. 2016 Nov 11;354(6313):738-741. doi: 10.1126/science.aah6972.
Although the time-dependent buildup of asymmetric Fano line shapes in absorption spectra has been of great theoretical interest in the past decade, experimental verification of the predictions has been elusive. Here, we report the experimental observation of the emergence of a Fano resonance in the prototype system of helium by interrupting the autoionization process of a correlated two-electron excited state with a strong laser field. The tunable temporal gate between excitation and termination of the resonance allows us to follow the formation of a Fano line shape in time. The agreement with ab initio calculations validates our experimental time-gating technique for addressing an even broader range of topics, such as the emergence of electron correlation, the onset of electron-internuclear coupling, and quasi-particle formation.
尽管过去十年中,与时间相关的非对称 Fano 线形状在吸收光谱中的积累一直引起了极大的理论兴趣,但对这些预测的实验验证却一直难以捉摸。在这里,我们报告了在氦的原型系统中通过强激光场中断相关双电子激发态的自电离过程来观察到的 Fano 共振的实验观测。可调谐的时间门可以在激发和共振终止之间进行,从而可以实时跟踪 Fano 线形状的形成。与从头算计算的一致性验证了我们的实验时间门技术,该技术可用于解决更广泛的问题,例如电子相关的出现、电子-核间耦合的开始以及准粒子的形成。