English

Filming non-radiative population transfer: Time-resolved x-ray scattering near an avoided crossing

Chemical Physics 2017-11-17 v3

Abstract

We show that time-resolved x-ray scattering from molecules prepared in a superposition of electronic states moving through an avoided crossing has new features not found in diffraction from the corresponding classical mixed state. Photoabsorption in molecular iodine at 520 nm produces a superposition of two dipole-allowed nearly degenerate electronic states, which interact due to non-adiabatic coupling. We show experimental evidence that the mixing of the nuclear wavepackets from the two electronic states at the avoided crossing leads to ultrafast changes in the angular composition of the scattering pattern. This provides a novel means to study transitions in excited molecular systems. We reconstruct a movie of the nuclear probability density arising from this interference.

Keywords

Cite

@article{arxiv.1708.03847,
  title  = {Filming non-radiative population transfer: Time-resolved x-ray scattering near an avoided crossing},
  author = {Matthew R. Ware and James M. Glownia and James P. Cryan and Robert Hartsock and Adi Natan and Philip H. Bucksbaum},
  journal= {arXiv preprint arXiv:1708.03847},
  year   = {2017}
}