Zeptosecond Birth Time Delay in Molecular Photoionization
Abstract
Photoionization is one of the fundamental light-matter interaction processes in which the absorption of a photon launches the escape of an electron. The time scale of the process poses many open questions. Experiments found time delays in the attosecond ( s) domain between electron ejection from different orbitals, electronic bands, or in different directions. Here, we demonstrate that across a molecular orbital the electron is not launched at the same time. The birth time rather depends on the travel time of the photon across the molecule, which is 247 zeptoseconds ( s) for the average bond length of H. Using an electron interferometric technique, we resolve this birth time delay between electron emission from the two centers of the hydrogen molecule.
Keywords
Cite
@article{arxiv.2010.08298,
title = {Zeptosecond Birth Time Delay in Molecular Photoionization},
author = {Sven Grundmann and Daniel Trabert and Kilian Fehre and Nico Strenger and Andreas Pier and Leon Kaiser and Max Kircher and Miriam Weller and Sebastian Eckart and Lothar Ph. H. Schmidt and Florian Trinter and Till Jahnke and Markus S. Schöffler and Reinhard Dörner},
journal= {arXiv preprint arXiv:2010.08298},
year = {2020}
}