A Simple Quantum Model of Ultracold Polar Molecule Collisions
Abstract
We present a unified formalism for describing chemical reaction rates of trapped, ultracold molecules. This formalism reduces the scattering to its essential features, namely, a propagation of the reactant molecules through a gauntlet of long-range forces before they ultimately encounter one another, followed by a probability for the reaction to occur once they do. In this way, the electric-field dependence should be readily parametrized in terms of a pair of fitting parameters (along with a coefficient) for each asymptotic value of partial wave quantum numbers . From this, the electric field dependence of the collision rates follows automatically. We present examples for reactive species such as KRb, and non-reactive species, such as RbCs.
Cite
@article{arxiv.1007.2652,
title = {A Simple Quantum Model of Ultracold Polar Molecule Collisions},
author = {Zbigniew Idziaszek and Goulven Quéméner and John L. Bohn and Paul S. Julienne},
journal= {arXiv preprint arXiv:1007.2652},
year = {2015}
}