Topological insulating phases in mono and bilayer graphene
arXiv:1007.3704 · doi:10.1103/PhysRevB.82.195438
Abstract
We analyze the influence of different quadratic interactions giving rise to time reversal invariant topological insulating phases in mono and bilayer graphene. We make use of the effective action formalism to determine the dependence of the Chern Simons coefficient on the different interactions.
References in corpus (11)
- The electronic properties of graphene
- Quantum Spin Hall Effect and Topological Phase Transition in HgTe Quantum Wells
- Classification of topological insulators and superconductors in three spatial dimensions
- Substrate-induced band gap opening in epitaxial graphene
- Biased bilayer graphene: semiconductor with a gap tunable by electric field effect
- Intrinsic and Rashba Spin-orbit Interactions in Graphene Sheets
- Spin-orbit coupling in curved graphene, fullerenes, nanotubes, and nanotube caps
- Topological confinement in bilayer graphene
- Spin-orbit coupling in a graphene bilayer and in graphite
- Sublattice ordering in a dilute ensemble of defects in graphene
- Quantum Renormalization of the Spin Hall Effect
Cited by in corpus (17)
- The electronic properties of bilayer graphene
- Topological kink states at a tilt boundary in gated multi-layer graphene
- Charge instabilities and topological phases in the extended Hubbard model on the honeycomb lattice with enlarged unit cell
- Band topology and quantum spin Hall effect in bilayer graphene
- Geometrical and topological aspects of graphene and related materials
- Topological Fermi liquids from Coulomb interactions in the doped Honeycomb lattice
- Topological electric current from time-dependent elastic deformations in graphene
- Observation of Time-Reversal Invariant Helical Edge-Modes in Bilayer Graphene/WSe Heterostructure
- Topological spin Hall and spin Nernst effects in a bilayer graphene
- Finite frequency magnetoelectric response of three dimensional Topological Insulators
- Spin Hall effect in AA-stacked bilayer graphene
- Fermionic dualities with axial gauge fields
- Quantum spin Hall phase in multilayer graphene
- Analytic solution for Gauged Dirac-Weyl equation in -dimensions
- Anomalous Hall Response in Two Dimensional Topological Insulators due to the Stark Effect
- Effective field theory for the bulk-edge correspondence in a two-dimensional Z_2 topological insulator with Rashba interactions
- The Effective field theory of 2+1 dimensional topological insulator in the presence of Rashba spin-orbit interaction