Coherence loss and revivals in atomic interferometry: A quantum-recoil analysis
Quantum Physics
2012-04-09 v2 Atomic Physics
Optics
Abstract
The coherence effects induced by external photons coupled to matter waves inside a Mach-Zehnder three-grating interferometer are analyzed. Alternatively to atom-photon entanglement scenarios, the model considered here only relies on the atomic wave function and the momentum shift induced in it by the photon scattering events. A functional dependence is thus found between the observables, namely the fringe visibility and the phase shift, and the transversal momentum transfer distribution. A good quantitative agreement is found when comparing the results obtained from our model with the experimental data.
Cite
@article{arxiv.1006.0450,
title = {Coherence loss and revivals in atomic interferometry: A quantum-recoil analysis},
author = {M. Davidovic and A. S. Sanz and M. Bozic and D. Arsenovic},
journal= {arXiv preprint arXiv:1006.0450},
year = {2012}
}
Comments
18 pages, 4 figures