Graphene, being essentially a surface, can borrow some properties of an insulating substrate (such as exchange or spin-orbit couplings) while still preserving a great degree of autonomy of its electronic structure. Such derived properties are commonly labeled as proximity. Here we perform systematic first-principles calculations of the proximity exchange coupling, induced by cobalt (Co) and nickel (Ni) in graphene, via a few (up to three) layers of hexagonal boron nitride (hBN). We find that the induced spin splitting of the graphene bands is of the order of 10 meV for a monolayer of hBN, decreasing in magnitude but alternating in sign by adding each new insulating layer. We find that the proximity exchange can be giant if there is a resona...
Graphene on an insulating ferromagnetic substrate-ferromagnetic insulator or ferromagnetic metal wit...
International audienceWe build a tight-binding Hamiltonian describing Co/Ni over graphene, contempla...
We perform extensive first-principles calculations for heterostructures composed of monolayer graphe...
Graphene, being essentially a surface, can borrow some properties of an insulating substrate (such a...
We investigate the proximity-induced exchange coupling in transition-metal dichalcogenides (TMDCs), ...
We investigate the electronic band structure of graphene on a series of two-dimensional magnetic tra...
This thesis deals with the proximity induced exchange coupling, induced from the ferromagnets cobalt...
We investigate the proximity-induced exchange coupling in transition-metal dichalcogenides (TMDCs), ...
We investigate the electronic band structure and the proximity exchange effect in bilayer graphene (...
We investigate the electronic band structure and the proximity exchange effect in bilayer graphene (...
Two-dimensional materials (2D) and their van der Waals heterostructures provide unique opportunities...
Using first-principles calculations we demonstrate sizable exchange coupling between a magnetic mole...
The weak intrinsic spin-orbit coupling in graphene can be greatly enhanced by proximity coupling. He...
We study orbital and spin-orbit proximity effects in graphene adsorbed to the Cu(111) surface by mea...
Graphene on an insulating ferromagnetic substrate-ferromagnetic insulator or ferromagnetic metal wit...
International audienceWe build a tight-binding Hamiltonian describing Co/Ni over graphene, contempla...
We perform extensive first-principles calculations for heterostructures composed of monolayer graphe...
Graphene, being essentially a surface, can borrow some properties of an insulating substrate (such a...
We investigate the proximity-induced exchange coupling in transition-metal dichalcogenides (TMDCs), ...
We investigate the electronic band structure of graphene on a series of two-dimensional magnetic tra...
This thesis deals with the proximity induced exchange coupling, induced from the ferromagnets cobalt...
We investigate the proximity-induced exchange coupling in transition-metal dichalcogenides (TMDCs), ...
We investigate the electronic band structure and the proximity exchange effect in bilayer graphene (...
We investigate the electronic band structure and the proximity exchange effect in bilayer graphene (...
Two-dimensional materials (2D) and their van der Waals heterostructures provide unique opportunities...
Using first-principles calculations we demonstrate sizable exchange coupling between a magnetic mole...
The weak intrinsic spin-orbit coupling in graphene can be greatly enhanced by proximity coupling. He...
We study orbital and spin-orbit proximity effects in graphene adsorbed to the Cu(111) surface by mea...
Graphene on an insulating ferromagnetic substrate-ferromagnetic insulator or ferromagnetic metal wit...
International audienceWe build a tight-binding Hamiltonian describing Co/Ni over graphene, contempla...
We perform extensive first-principles calculations for heterostructures composed of monolayer graphe...