Order by Disorder and by Doping in Quantum Hall Valley Ferromagnets
arXiv:1411.3354 · doi:10.1103/PhysRevB.93.014442
Abstract
We examine the Si(111) multi-valley quantum Hall system and show that it exhibits an exceptionally rich interplay of broken symmetries and quantum Hall ordering already near integer fillings in the range . This six-valley system has a large symmetry in the limit where the magnetic length is much larger than the lattice constant. We find that the discrete factor breaks over a broad range of fillings at a finite temperature transition to a discrete nematic phase. As the continuous symmetry also breaks: completely near , to a residual near and and to a residual near and . Interestingly, the symmetry breaking near and involves a combination of selection by thermal fluctuations known as "order by disorder" and a selection by the energetics of Skyrme lattices induced by moving away from the commensurate fillings, a mechanism we term "order by doping". We also exhibit modestly simpler analogs in the four-valley Si(110) system.
5+3 pages, 3 figures
References in corpus (10)
- Quantum Hall Ferromagnetism in Graphene
- Graphene integer quantum Hall effect in the ferromagnetic and paramagnetic regimes
- Interplay of quantum and thermal fluctuations in a frustrated magnet
- More Realistic Hamiltonians for the Fractional Quantum Hall Regime in GaAs and Graphene
- Quantum Selection of Order in an Antiferromagnet on a Kagomé Lattice
- Landau Level Mixing in the Perturbative Limit
- Nematic Valley Ordering in Quantum Hall Systems
- Integer quantum Hall effect on a six valley hydrogen-passivated silicon (111) surface
- Strongly enhanced effective mass in dilute two-dimensional electron systems: System-independent origin
- Microscopic Theory of a Quantum Hall Ising Nematic: Domain Walls and Disorder
Cited by in corpus (5)
- Observation of a Nematic Quantum Hall Liquid on the Surface of Bismuth
- Ferroelectric quantum Hall phase revealed by visualizing Landau level wavefunction interference
- Quantum Hall Valley Nematics
- Gully quantum Hall ferromagnetism in biased trilayer graphene
- Topology- and symmetry-protected domain wall conduction in quantum Hall nematics