中文

利用相位调控的极紫外脉冲追踪阿秒电子相干

原子物理 2020-11-03 v3 原子与分子团簇 光学 量子物理

摘要

近年来超快极紫外(XUV)相干光源的发展,为更好地理解物质的结构与动力学带来了巨大潜力。有前景的途径包括 XUV 能区的先进相干控制与非线性光谱方案,可提供前所未有的空间与时间分辨率。然而,其实现一直受限于产生具有精确时序与相位控制的 XUV 脉冲序列这一实验挑战。特别是,对 XUV 脉冲序列中单个脉冲相位的直接控制与调控,为相干控制与多维光谱学开辟了令人兴奋的可能,但此前尚未实现。在此,我们在一个高度时间稳定且相位调制的 XUV 泵浦–XUV 探测实验中克服了这些限制,直接探测了内层子壳电子相干的演化与退相干。该方法避免了任何用于直接脉冲调控的 XUV 光学元件,为 XUV 波长下先进非线性光学与光谱学的广泛应用开辟了道路。

关键词

引用

@article{arxiv.1906.07112,
  title  = {Tracking Attosecond Electronic Coherences Using Phase-Manipulated Extreme Ultraviolet Pulses},
  author = {Andreas Wituschek and Lukas Bruder and Enrico Allaria and Ulrich Bangert and Marcel Binz and Carlo Callegari and Giulio Cerullo and Paolo Cinquegrana and Luca Gianessi and Miltcho Danailov and Alexander Demidovich and Michele Di Fraia and Marcel Drabbels and Raimund Feifel and Tim Laarmann and Rupert Michiels and Najmeh Sadat Mirian and Marcel Mudrich and Ivaylo Nikolov and Finn H. O'Shea and Giuseppe Penco and Paolo Piseri and Oksana Plekan and Kevin Charles Prince and Andreas Przystawik and Primož Rebernik Ribič and Giuseppe Sansone and Paolo Sigalotti and Simone Spampinati and Carlo Spezzani and Richard James Squibb and Stefano Stranges and Daniel Uhl and Frank Stienkemeier},
  journal= {arXiv preprint arXiv:1906.07112},
  year   = {2020}
}

备注

This is the accepted version of the article. The Version of Record is available online at 10.1038/s41467-020-14721-2