Bilayer quantum Hall system at $\nu_t = 1$: pseudospin models and in-plane magnetic field
Abstract
We investigate two theoretical pseudomagnon-based models for a bilayer quantum Hall system (BQHS) at total filling factor . We find a unifying framework which elucidates the different approximations that are made. We also consider the effect of an in-plane magnetic field in BQHSs at , by deriving an equation for the ground state energy from the underlying microscopic physics. Although this equation is derived for small in-plane fields, its predictions agree with recent experimental findings at stronger in-plane fields, for low electron densities. We also take into account finite-temperature effects by means of a renormalisation group analysis, and find that they are small at the temperatures that were investigated experimentally.
Keywords
Cite
@article{arxiv.0909.1729,
title = {Bilayer quantum Hall system at $\nu_t = 1$: pseudospin models and in-plane magnetic field},
author = {O. Tieleman and A. Lazarides and D. Makogon and C. Morais Smith},
journal= {arXiv preprint arXiv:0909.1729},
year = {2010}
}
Comments
9 pages, 2 figures; improved figures; added references; minor changes in text. Accepted for publication in PRB