Ordering effect of Coulomb interaction in ballistic double-ring systems
Abstract
We study a model of two concentric onedimensional rings with incommensurate areas and , in a constant magnetic field. The two rings are coupled by a nonhomogeneous inter-ring tunneling amplitude, which makes the one-particle spectrum chaotic. For noninteracting particles the energy of the many-body ground state and the first excited state exhibit random fluctuations characterized by the Wigner-Dyson statistics. In contrast, we show that the electron-electron interaction orders the magnetic field dependence of these quantities, forcing them to become periodic functions, with period . In such a strongly correlated system the only possible source of disorder comes from charge fluctuations, which can be controlled by a tunable inter-ring gate voltage.
Keywords
Cite
@article{arxiv.cond-mat/9612200,
title = {Ordering effect of Coulomb interaction in ballistic double-ring systems},
author = {C. M. Canali and W. Stephan and L. Y. Gorelik and R. I. Shekhter and M. Jonson},
journal= {arXiv preprint arXiv:cond-mat/9612200},
year = {2009}
}
Comments
4 pages, 4 eps figures, revised text and new figures (as published)