We investigate an effective model of proximity modified graphene (or symmetrylike materials) with broken time-reversal symmetry. We predict the appearance of quantum anomalous Hall phases by computing bulk band gap and Chern numbers for benchmark combinations of system parameters. Allowing for staggered exchange field enables quantum anomalous Hall effect in flat graphene with Chern number C = 1. We explicitly show edge states in zigzag and armchair nanoribbons and explore their localization behavior. Remarkably, the combination of staggered intrinsic spin-orbit and uniform exchange coupling gives topologically protected (unlike in time-reversal systems) pseudohelical states, whose spin is opposite in opposite zigzag edges. Rotating the mag...
Motivated by a recent experiment (Sanchez-Yamagishi et al 2016 Nat. Nanotechnol. 214) reporting evid...
Motivated by the recent observation of an anomalous Hall effect in twisted bilayer graphene, we use ...
The so-called quantum spin Hall phase is a topologically nontrivial insulating phase that is predict...
We investigate an effective model of proximity modified graphene (or symmetrylike materials) with br...
We propose realizing the quantum anomalous Hall effect by proximity coupling graphene to an antiferr...
The quantum anomalous Hall effect can occur in single- and few-layer graphene systems that have both...
Realizations of some topological phases in two-dimensional systems rely on the challenge of jointly ...
Using the non-equilibrium Green’s function method and the Keldysh formalism, we study the effects of...
Using the non-equilibrium Green’s function method and the Keldysh formalism, we study the effects of...
Monolayer graphene placed with a twist on top of AB-stacked bilayer graphene hosts topological flat ...
Using the non-equilibrium Green’s function method and the Keldysh formalism, we study the effects of...
We investigate the possibility of realizing quantum anomalous Hall effect in graphene. We show that ...
Monolayer graphene placed with a twist on top of AB-stacked bilayer graphene hosts topological flat ...
Motivated by the recent observation of an anomalous Hall effect in twisted bilayer graphene, we use ...
We investigate topological phases of bilayer graphene subject to antiferromagnetic exchange fields, ...
Motivated by a recent experiment (Sanchez-Yamagishi et al 2016 Nat. Nanotechnol. 214) reporting evid...
Motivated by the recent observation of an anomalous Hall effect in twisted bilayer graphene, we use ...
The so-called quantum spin Hall phase is a topologically nontrivial insulating phase that is predict...
We investigate an effective model of proximity modified graphene (or symmetrylike materials) with br...
We propose realizing the quantum anomalous Hall effect by proximity coupling graphene to an antiferr...
The quantum anomalous Hall effect can occur in single- and few-layer graphene systems that have both...
Realizations of some topological phases in two-dimensional systems rely on the challenge of jointly ...
Using the non-equilibrium Green’s function method and the Keldysh formalism, we study the effects of...
Using the non-equilibrium Green’s function method and the Keldysh formalism, we study the effects of...
Monolayer graphene placed with a twist on top of AB-stacked bilayer graphene hosts topological flat ...
Using the non-equilibrium Green’s function method and the Keldysh formalism, we study the effects of...
We investigate the possibility of realizing quantum anomalous Hall effect in graphene. We show that ...
Monolayer graphene placed with a twist on top of AB-stacked bilayer graphene hosts topological flat ...
Motivated by the recent observation of an anomalous Hall effect in twisted bilayer graphene, we use ...
We investigate topological phases of bilayer graphene subject to antiferromagnetic exchange fields, ...
Motivated by a recent experiment (Sanchez-Yamagishi et al 2016 Nat. Nanotechnol. 214) reporting evid...
Motivated by the recent observation of an anomalous Hall effect in twisted bilayer graphene, we use ...
The so-called quantum spin Hall phase is a topologically nontrivial insulating phase that is predict...