Quantum simulation of a triatomic chemical reaction with ultracold atoms on a waveguide
Quantum Physics
2015-05-27 v1
Abstract
We study the scaling and coordinate transformation to physically simulate quantum three-body collinear chemical reactions of the type A+BC AB+C by the motion of single ultracold atoms or a weakly interacting Bose-Einstein condensate on an -shaped waveguide. As an example we show that the parameters to model the reaction F+HH H+HF with lithium are at reach with current technology. This mapping provides also an inverse scattering tool to find an unknown potential, and a way to transfer the knowledge on molecular reaction dynamics to design beam splitters for cold atoms with control of the channel outcome and vibrational excitation.
Keywords
Cite
@article{arxiv.1102.4718,
title = {Quantum simulation of a triatomic chemical reaction with ultracold atoms on a waveguide},
author = {E. Torrontegui and A. Ruschhaupt and D. Guéry-Odelin and J. G. Muga},
journal= {arXiv preprint arXiv:1102.4718},
year = {2015}
}