A Fully Quantum Mechanical Model of a SQUID Ring Coupled to an Electromagnetic Field
Abstract
A quantum system comprising of a monochromatic electromagnetic field coupled to a SQUID ring with sinusoidal non-linearity, is studied. A magnetostatic flux is also threading the SQUID ring, and is used to control the coupling between the two systems. It is shown that for special values of the system is strongly coupled. The time evolution of the system is studied. It is shown that exchange of energy takes place between the two modes and that the system becomes entangled. A second quasi-classical model that treats the electromagnetic field classically is also studied. A comparison between the fully quantum mechanical model with the electromagnetic field initially in a coherent state and the quasi-classical model, is made.
Cite
@article{arxiv.cond-mat/0411057,
title = {A Fully Quantum Mechanical Model of a SQUID Ring Coupled to an Electromagnetic Field},
author = {M. J. Everitt and P. B. Stiffell and T. D. Clark and A. Vourdas and J. F. Ralph and H. Prance and R. J. Prance},
journal= {arXiv preprint arXiv:cond-mat/0411057},
year = {2007}
}
Comments
7 pages, 9 figures. Uploaded as implementing a policy of arXiving old papers