We consider theoretically the influence of crystalline fields on the electronic structure of graphene placed on a layered material with reduced symmetry and large spin-orbit coupling (SOC). We use a perturbative procedure combined with the Slater-Koster method to derive the low-energy effective Hamiltonian around the $K$ points and estimate the magnitude of the effective couplings. Two simple models for the envisaged graphene-substrate hybrid bilayer are considered, in which the relevant atomic orbitals hybridize with either top or hollow sites of the graphene honeycomb lattice. In both cases, the interlayer coupling to a crystal-field-split substrate is found to generate highly anisotropic proximity spin-orbit interactions, including in-pl...
We study the magnetic-field dependence of Landau levels in graphene proximitized by large spin-orbit...
Proximity orbital and spin-orbit effects of bilayer graphene on monolayer WSe2 are investigated from...
Proximity orbital and spin-orbit effects of bilayer graphene on monolayer WSe2 are investigated from...
A theory of spin-orbit coupling in bilayer graphene is presented. The electronic band structure of t...
A theory of spin-orbit coupling in bilayer graphene is presented. The electronic band structure of t...
A theory of spin-orbit coupling in bilayer graphene is presented. The electronic band structure of t...
We use a combination of experimental techniques to demonstrate a general occurrence of spin-orbit in...
A large enhancement in the spin-orbit coupling of graphene has been predicted when interfacing it wi...
van der Waals heterostructures based on two-dimensional materials have recently become a very active...
Van der Waals heterostructures assembled from atomically thin crystals are ideal model systems to st...
van der Waals heterostructures based on two-dimensional materials have recently become a very active...
Large spin-orbital proximity effects have been predicted in graphene interfaced with a transition-me...
Enhancing the spin-orbit interaction in graphene, via proximity effects with topological insulators,...
Large spin-orbital proximity effects have been predicted in graphene interfaced with a transition-me...
We study the magnetic-field dependence of Landau levels in graphene proximitized by large spin-orbit...
We study the magnetic-field dependence of Landau levels in graphene proximitized by large spin-orbit...
Proximity orbital and spin-orbit effects of bilayer graphene on monolayer WSe2 are investigated from...
Proximity orbital and spin-orbit effects of bilayer graphene on monolayer WSe2 are investigated from...
A theory of spin-orbit coupling in bilayer graphene is presented. The electronic band structure of t...
A theory of spin-orbit coupling in bilayer graphene is presented. The electronic band structure of t...
A theory of spin-orbit coupling in bilayer graphene is presented. The electronic band structure of t...
We use a combination of experimental techniques to demonstrate a general occurrence of spin-orbit in...
A large enhancement in the spin-orbit coupling of graphene has been predicted when interfacing it wi...
van der Waals heterostructures based on two-dimensional materials have recently become a very active...
Van der Waals heterostructures assembled from atomically thin crystals are ideal model systems to st...
van der Waals heterostructures based on two-dimensional materials have recently become a very active...
Large spin-orbital proximity effects have been predicted in graphene interfaced with a transition-me...
Enhancing the spin-orbit interaction in graphene, via proximity effects with topological insulators,...
Large spin-orbital proximity effects have been predicted in graphene interfaced with a transition-me...
We study the magnetic-field dependence of Landau levels in graphene proximitized by large spin-orbit...
We study the magnetic-field dependence of Landau levels in graphene proximitized by large spin-orbit...
Proximity orbital and spin-orbit effects of bilayer graphene on monolayer WSe2 are investigated from...
Proximity orbital and spin-orbit effects of bilayer graphene on monolayer WSe2 are investigated from...