Persistent Current of a One-Dimensional Wigner Crystal-Ring
Abstract
We calculate the magnetic moment (`persistent current') in a strongly correlated electron system --- a Wigner crystal --- in a one-dimensional ballistic ring. The flux- and temperature dependence of the persistent current is shown to be essentially the same as for a system of non-interacting electrons. In contrast, by incorporating into the ring geometry a tunnel barrier, that pins the Wigner crystal, the current is suppressed and its temperature dependence is drastically changed. The competition between two temperature effects --- a reduced barrier height for macroscopic tunneling and a loss of quantum coherence --- results in a sharp peak in the temperature dependence, which for a rigid Wigner crystal appears at , ( is the sound velocity of the Wigner crystal, is the length of the ring).
Cite
@article{arxiv.cond-mat/9404072,
title = {Persistent Current of a One-Dimensional Wigner Crystal-Ring},
author = {I. V. Krive and R. I. Shekhter and S. M. Girvin and M. Jonson},
journal= {arXiv preprint arXiv:cond-mat/9404072},
year = {2007}
}
Comments
13 pages LaTeX v3.14 with RevTeX v3.0, 1 fig available on request APR 93-21