English

Influence of conformational molecular dynamics on matter wave interferometry

Quantum Physics 2014-05-20 v1 Atomic Physics

Abstract

We investigate the influence of thermally activated internal molecular dynamics on the phase shifts of matter waves inside a molecule interferometer. While de Broglie physics generally describes only the center-of-mass motion of a quantum object, our experiment demonstrates that the translational quantum phase is sensitive to dynamic conformational state changes inside the diffracted molecules. The structural flexibility of tailor-made hot organic particles is sufficient to admit a mixture of strongly fluctuating dipole moments. These modify the electric susceptibility and through this the quantum interference pattern in the presence of an external electric field. Detailed molecular dynamics simulations combined with density functional theory allow us to quantify the time-dependent structural reconfigurations and to predict the ensemble-averaged square of the dipole moment which is found to be in good agreement with the interferometric result. The experiment thus opens a new perspective on matter wave interferometry as it demonstrates for the first time that it is possible to collect structural information about molecules even if they are delocalized over more than hundred times their own diameter.

Keywords

Cite

@article{arxiv.1405.4649,
  title  = {Influence of conformational molecular dynamics on matter wave interferometry},
  author = {Michael Gring and Stefan Gerlich and Sandra Eibenberger and Stefan Nimmrichter and Tarik Berrada and Markus Arndt and Hendrik Ulbricht and Klaus Hornberger and Marcel Müri and Marcel Mayor and Marcus Böckmann and Nikos Doltsinis},
  journal= {arXiv preprint arXiv:1405.4649},
  year   = {2014}
}

Comments

5 pages, 3 figures

R2 v1 2026-06-22T04:17:41.057Z