Quantum Spin Hall Effect in Twisted Bilayer Graphene
arXiv:1609.07734 · doi:10.1088/2053-1583/aa5265
Abstract
Motivated by a recent experiment (Sanchez-Yamagishi et.al, arXiv:1602.06815) reporting evidence of helical spin-polarized edge states in layer-biased twisted bilayer graphene under a magnetic flux, we study the possibility of stabilising a Quantum Spin Hall (QSH) phase in such a system, without Zeeman or spin-orbit couplings, and with a QSH gap induced instead by electronic interactions. We analyse how magnetic flux, electric field, interlayer rotation angle, and interactions (treated at a mean field level) combine to produce a pseudo-QSH with broken time-reversal symmetry, and spin-polarized helical edge states. The effect is a consequence of a robust interaction-induced ferrimagnetic ordering of the Quantum Hall ground state under an interlayer bias, provided the two rotated layers are effectively decoupled at low energies. We discuss in detail the electronic structure, and the constraints on system parameters, such as the angle, interactions and magnetic flux, required to reach the pseudo-QSH phase. We find, in particular, that purely local electronic interactions are not sufficient to account for the experimental observations, which demand at least nearest-neighbour interactions to be included.
8 pages, 3 figures
References in corpus (22)
- The electronic properties of graphene
- Non-Abelian Anyons and Topological Quantum Computation
- Quantum Spin Hall Insulator State in HgTe Quantum Wells
- Superconducting proximity effect and Majorana fermions at the surface of a topological insulator
- Majorana Fermions and a Topological Phase Transition in Semiconductor-Superconductor Heterostructures
- Classification of topological quantum matter with symmetries
- Quantum Hall Ferromagnetism in Graphene
- Landau Level Splitting in Graphene in High Magnetic Fields
- Continuum Model of the Twisted Bilayer
- Interactions and phase transitions on graphene's honeycomb lattice
- Spin Filtered Edge States and Quantum Hall Effect in Graphene
- One-dimensional Topological Edge States of Bismuth Bilayers
- Edge States and the Quantized Hall Effect in Graphene
- Graphene integer quantum Hall effect in the ferromagnetic and paramagnetic regimes
- Excitonic gap, phase transition, and quantum Hall effect in graphene
- Room Temperature Quantum Spin Hall Insulators with a Buckled Square Lattice
- SO(3) symmetry between Neel and ferromagnetic order parameters for graphene in a magnetic field
- Majorana Zero Modes in Graphene
- Odd-Integer Quantum Hall Effect in Graphene: Interaction and Disorder Effects
- Edge excitations of the canted antiferromagnetic phase of the quantum Hall state in graphene: a simplified analysis
- Noncollinear magnetic phases and edge states in graphene quantum Hall bars
- Robust Room-Temperature Quantum Spin Hall Effect in Methyl-functionalized InBi honeycomb film