Zeptosecond Birth Time Delay in Molecular Photoionization
arXiv:2010.08298 · doi:10.1126/science.abb9318
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.