English

Non-Adiabatic Electronic and Vibrational Ring-Opening Dynamics resolved with Attosecond Core-Level Spectroscopy

Chemical Physics 2024-11-07 v2 Optics

Abstract

Non-adiabatic dynamics and conical intersections play a central role in the chemistry of most polyatomic molecules, ranging from isomerization to heterocyclic ring opening and avoided photo-damage of DNA. Studying the underpinning correlated dynamics of electronic and nuclear wave packets is a major challenge in real-time and, many times involves optically dark transient states. We show that attosecond core-level spectroscopy reveals the pathway dynamics of neutral furan across its conical intersections and dark states. Our method measures electronic-nuclear correlations to detect the dephasing of electronic coherence due to nuclear motion and identifies the ring-opened isomer as the dominant product. These results demonstrate the efficacy of attosecond core level spectroscopy as a potent method to investigate the real-time dynamics of photochemical reaction pathways in complex molecular systems.

Keywords

Cite

@article{arxiv.2209.04330,
  title  = {Non-Adiabatic Electronic and Vibrational Ring-Opening Dynamics resolved with Attosecond Core-Level Spectroscopy},
  author = {S. Severino and K. M. Ziems and M. Reduzzi and A. Summers and H. -W. Sun and Y. -H. Chien and S. Gräfe and J. Biegert},
  journal= {arXiv preprint arXiv:2209.04330},
  year   = {2024}
}
R2 v1 2026-06-28T01:01:10.040Z