Van der Waals heterostructures consisting of Bernal bilayer graphene (BLG) and hexagonal boron nitride (hBN) are investigated. By performing first-principles calculations, we capture the essential BLG band structure features for several stacking and encapsulation scenarios. A low-energy model Hamiltonian, comprising orbital and spin-orbit coupling (SOC) terms, is employed to reproduce the hBN-modified BLG dispersion, spin splittings, and spin expectation values. Most important, the hBN layers open an orbital gap in the BLG spectrum, which can range from zero to tens of meV, depending on the precise stacking arrangement of the individual atoms. Therefore, large local band gap variations may arise in experimentally relevant moiré structures. ...
We investigate the magnetic minibands of a heterostructure consisting of bilayer graphene (BLG) and ...
The recently observed unconventional ferroelectricity in AB bilayer graphene sandwiched by hexagonal...
In this work, we study the structural and electronic properties of boron nitride bilayers sandwiched...
We perform extensive first-principles calculations for heterostructures composed of monolayer graphe...
This work was funded by the CERCA Programme/Generalitat de Catalunya.We investigate the electronic b...
We investigate the electronic band structure of graphene on a series of two-dimensional hexagonal ni...
The weak intrinsic spin-orbit coupling in graphene can be greatly enhanced by proximity coupling. He...
Proximity orbital and spin-orbit effects of bilayer graphene on monolayer WSe2 are investigated from...
Graphene's planar structure and unique low energy spectrum make it an intriguing material to study i...
The role of defects in van der Waals heterostructures made of graphene and hexagonal boron nitride (...
By performing first-principles calculations, we studied hexagonal-boron-nitride (hBN)-supported grap...
We present a detailed study of the electronic and spin-orbit properties of single and bilayer graphe...
Proximity orbital and spin-orbit effects of bilayer graphene on monolayer WSe2 are investigated from...
We study fully hexagonal boron nitride (hBN) encapsulated graphene spin valve devices at room temper...
We investigate the proximity spin-orbit and exchange couplings in ABA and ABC trilayer graphene enca...
We investigate the magnetic minibands of a heterostructure consisting of bilayer graphene (BLG) and ...
The recently observed unconventional ferroelectricity in AB bilayer graphene sandwiched by hexagonal...
In this work, we study the structural and electronic properties of boron nitride bilayers sandwiched...
We perform extensive first-principles calculations for heterostructures composed of monolayer graphe...
This work was funded by the CERCA Programme/Generalitat de Catalunya.We investigate the electronic b...
We investigate the electronic band structure of graphene on a series of two-dimensional hexagonal ni...
The weak intrinsic spin-orbit coupling in graphene can be greatly enhanced by proximity coupling. He...
Proximity orbital and spin-orbit effects of bilayer graphene on monolayer WSe2 are investigated from...
Graphene's planar structure and unique low energy spectrum make it an intriguing material to study i...
The role of defects in van der Waals heterostructures made of graphene and hexagonal boron nitride (...
By performing first-principles calculations, we studied hexagonal-boron-nitride (hBN)-supported grap...
We present a detailed study of the electronic and spin-orbit properties of single and bilayer graphe...
Proximity orbital and spin-orbit effects of bilayer graphene on monolayer WSe2 are investigated from...
We study fully hexagonal boron nitride (hBN) encapsulated graphene spin valve devices at room temper...
We investigate the proximity spin-orbit and exchange couplings in ABA and ABC trilayer graphene enca...
We investigate the magnetic minibands of a heterostructure consisting of bilayer graphene (BLG) and ...
The recently observed unconventional ferroelectricity in AB bilayer graphene sandwiched by hexagonal...
In this work, we study the structural and electronic properties of boron nitride bilayers sandwiched...