English

Circular dichroism in the photoelectron angular distribution of achiral molecules

Materials Science 2025-07-17 v1

Abstract

Circular dichroism in the angular distribution (CDAD) is the effect that the angular intensity distribution of photoemitted electrons depends on the handedness of the incident circularly polarized light. A CDAD may arise from intrinsic material properties like chirality, spin-orbit interaction, or quantum-geometrical effects on the electronic structure. In addition, CDAD has also been reported for achiral organic molecules at the interface to metallic substrates. For this latter case, we investigate two prototypical π\pi-conjugated molecules, namely tetracene and pentacene, whose frontier orbitals have a similar shape but exhibit distinctly different symmetries. By comparing experimental CDAD momentum maps with simulations within time-dependent density functional theory, we show how the final state of the photoelectron must be regarded as the source of the CDAD in such otherwise achiral systems. We gain additional insight into the mechanism by employing a simple scattering model for the final state, which allows us to decompose the CDAD signal into partial wave contributions.

Keywords

Cite

@article{arxiv.2507.12113,
  title  = {Circular dichroism in the photoelectron angular distribution of achiral molecules},
  author = {Christian S. Kern and Xiaosheng Yang and Giovanni Zamborlini and Simone Mearini and Matteo Jugovac and Vitaliy Feyer and Umberto De Giovannini and Angel Rubio and Serguei Soubatch and Michael G. Ramsey and F. Stefan Tautz and Peter Puschnig},
  journal= {arXiv preprint arXiv:2507.12113},
  year   = {2025}
}