Orbital ferromagnetism in interacting few-electron dots with strong spin-orbit coupling
Mesoscale and Nanoscale Physics
2014-09-02 v2
Abstract
We study the ground state of weakly interacting electrons (with ) in a two-dimensional parabolic quantum dot with strong Rashba spin-orbit coupling. Using dimensionless parameters for the Coulomb interaction, , and the Rashba coupling, , the low-energy physics is characterized by an almost flat single-particle dispersion. From an analytical approach for and , and from numerical exact diagonalization and Hartree-Fock calculations, we find a transition from a conventional unmagnetized ground state (for ) to an orbital ferromagnet (for ), with a large magnetization and a circulating charge current. We show that the critical interaction strength, , vanishes in the limit .
Cite
@article{arxiv.1405.2675,
title = {Orbital ferromagnetism in interacting few-electron dots with strong spin-orbit coupling},
author = {Amin Naseri and Alex Zazunov and Reinhold Egger},
journal= {arXiv preprint arXiv:1405.2675},
year = {2014}
}
Comments
15 pages, 9 figures; (v2) more discussion added, fig.8 corrected