We study orbital and spin-orbit proximity effects in graphene adsorbed to the Cu(111) surface by means of density functional theory (DFT). The proximity effects are caused mainly by the hybridization of graphene p and copper d orbitals. Our electronic structure calculations agree well with the experimentally observed features. We carry out a graphene-Cu(111) distance dependent study to obtain proximity orbital and spin-orbit coupling parameters, by fitting the DFT results to a robust low energy model Hamiltonian. We find a strong distance dependence of the Rashba and intrinsic proximity induced spin-orbit coupling parameters, which are in the meV and hundreds of mu eV range, respectively, for experimentally relevant distances. The Dirac spe...
International audienceWe build a tight-binding Hamiltonian describing Co/Ni over graphene, contempla...
ABSTRACT: Early stages of carbon monolayer nucleation on the copper (111) surface are systematically...
We present a detailed theoretical study of effective spin-orbit coupling (SOC) Hamiltonians for grap...
We study orbital and spin-orbit proximity effects in graphene adsorbed to the Cu(111) surface by mea...
We present a combined DFT and model Hamiltonian analysis of spin-orbit coupling in graphene induced ...
[EN] The so-called spin-orbit proximity effect experimentally realized in graphene (G) on several di...
Graphene, being essentially a surface, can borrow some properties of an insulating substrate (such a...
Understanding the nature of the interaction at the graphene/metal interfaces is the basis for graphe...
In this work we have used atomically-resolved scanning tunneling microscopy and spectroscopy to stud...
Man-made artificial graphene has attracted significant attention in the past few years due to the po...
We present a study of graphene/substrate interactions on ultrahigh-vacuum-grown graphene islands wit...
Graphene growth by chemical vapor deposition on copper is one of the most popular method to obtain l...
We investigate the electronic band structure of graphene on a series of two-dimensional magnetic tra...
Graphene growth by chemical vapour deposition (CVD) on copper foil has emerged as one of the most pr...
The spin-orbit coupling in graphene induces spectral gaps at the high-symmetry points. The relevant ...
International audienceWe build a tight-binding Hamiltonian describing Co/Ni over graphene, contempla...
ABSTRACT: Early stages of carbon monolayer nucleation on the copper (111) surface are systematically...
We present a detailed theoretical study of effective spin-orbit coupling (SOC) Hamiltonians for grap...
We study orbital and spin-orbit proximity effects in graphene adsorbed to the Cu(111) surface by mea...
We present a combined DFT and model Hamiltonian analysis of spin-orbit coupling in graphene induced ...
[EN] The so-called spin-orbit proximity effect experimentally realized in graphene (G) on several di...
Graphene, being essentially a surface, can borrow some properties of an insulating substrate (such a...
Understanding the nature of the interaction at the graphene/metal interfaces is the basis for graphe...
In this work we have used atomically-resolved scanning tunneling microscopy and spectroscopy to stud...
Man-made artificial graphene has attracted significant attention in the past few years due to the po...
We present a study of graphene/substrate interactions on ultrahigh-vacuum-grown graphene islands wit...
Graphene growth by chemical vapor deposition on copper is one of the most popular method to obtain l...
We investigate the electronic band structure of graphene on a series of two-dimensional magnetic tra...
Graphene growth by chemical vapour deposition (CVD) on copper foil has emerged as one of the most pr...
The spin-orbit coupling in graphene induces spectral gaps at the high-symmetry points. The relevant ...
International audienceWe build a tight-binding Hamiltonian describing Co/Ni over graphene, contempla...
ABSTRACT: Early stages of carbon monolayer nucleation on the copper (111) surface are systematically...
We present a detailed theoretical study of effective spin-orbit coupling (SOC) Hamiltonians for grap...