Non-locality of Two Ultracold Trapped Atoms
Abstract
We undertake a detailed analysis of the non-local properties of the fundamental problem of two trapped, distinguishable neutral atoms which interact with a short range potential characterised by an s-wave scattering length. We show that this interaction generates continuous variable (CV) entanglement between the external degrees of freedom of the atoms and consider its behaviour as a function of both, the distance between the traps and the magnitude of the inter-particle scattering length. We first quantify the entanglement in the ground state of the system at zero temperature and then, adopting a phase-space approach, test the violation of the Clauser-Horn-Shimony-Holt inequality at zero and non-zero temperature and under the effects of general dissipative local environments.
Keywords
Cite
@article{arxiv.1008.0962,
title = {Non-locality of Two Ultracold Trapped Atoms},
author = {Thomás Fogarty and John Goold and Mauro Paternostro and Thomas Busch},
journal= {arXiv preprint arXiv:1008.0962},
year = {2015}
}
Comments
16 pages, 8 figures