Fine Structure and Fractional Aharonov-Bohm Effect
Abstract
We find a fine structure in the Aharonov-Bohm effect, characterized by the appearence of a new type of periodic oscillations having smaller fractional period and an amplitude, which may compare with the amplitude of the conventional Aharonov-Bohm effect. Specifically, at low density or strong coupling on a Hubbard ring can coexist along with the conventional Aaronov-Bohm oscillations with the period equal to an integer, measured in units of the elementary flux quantum, two additional oscillations with periods and . The integers and are the particles number and the number of down-spin particles, respectively. {}From a solution of the Bethe ansatz equations for electrons located on a ring in a magnetic field we show that the fine structure is due to electron-electron and Zeeman interactions. Our results are valid in the dilute density limit and for an arbitrary value of the Hubbard repulsion
Cite
@article{arxiv.cond-mat/9406096,
title = {Fine Structure and Fractional Aharonov-Bohm Effect},
author = {F. V. Kusmartsev and Minoru Takahashi},
journal= {arXiv preprint arXiv:cond-mat/9406096},
year = {2009}
}
Comments
40 pages (Latex,Revtex) 12 figures by request, in Technical Reports of ISSP , Ser. A, No.2836 (1994)