Title: Observation of Interatomic Coulombic Decay Induced by Double Excitation of Helium in Nanodroplets
Authors: B. Bastian, J. D. Asmussen, L. Ben Ltaief, H. B. Pedersen, K. Sishodia, S. De, S. R. Krishnan, C. Medina, N. Pal, R. Richter, N. Sisourat, and M. Mudrich
DOI: https://doi.org/10.1103/PhysRevLett.132.233001
Date: 03/05/2024
Working Group: WG3
Grant Period: 2nd GP 2023-2024
Abstract: Interatomic Coulombic decay (ICD) plays a crucial role in weakly bound complexes exposed to intense or high-energy radiation. So far, neutral or ionic atoms or molecules have been prepared in singly excited electron or hole states that can transfer energy to neighboring centers and cause ionization and radiation damage. Here we demonstrate that a doubly excited atom, despite its extremely short lifetime, can decay by ICD; evidenced by high-resolution photoelectron spectra of He nanodroplets excited to the 2𝑠2𝑝+ state. We find that ICD proceeds by relaxation into excited He*He+ atom-pair states, in agreement with calculations. The ability of inducing ICD by resonant excitation far above the single-ionization threshold opens opportunities for controlling radiation damage to a high degree of element specificity and spectral selectivity.








