International audienceWe report a systematic first-principles investigation of the influence of different magnetic insulators on the magnetic proximity effect induced in graphene. Four different magnetic insulators are considered: two ferromagnetic europium chalcogenides namely EuO and EuS and two ferrimagnetic insulators yttrium iron garnet (YIG) and cobalt ferrite (CFO). The obtained exchange-splitting in graphene varies from tens to hundreds of meV depending on substrates. We find an electron doping to graphene induced by YIG and europium chalcogenides substrates, that shift the Fermi level above the Dirac cone up to 0.78 eV and 1.3 eV respectively, whereas hole doping shifts the Fermi level down below the Dirac cone about 0.5 eV in grap...
Graphene, a very intriguing two-dimensional Dirac electronic system with high carrier mobility, is p...
Graphene is the first model system of two-dimensional topological insulator (TI), also known as quan...
Graphene and other two-dimensional materials are receiving increasing attention as potential materia...
International audienceWe report a systematic first-principles investigation of the influence of diff...
Proximity exchange interaction between graphene electrons and nearby magnetic insulators paves the w...
he exchange proximity interaction (EPI) has been predicted to exist at the interface between a ferro...
Engineering 2D material heterostructures by combining the best of different materials in one ultimat...
Electrostatic gating enables key functionality in modern electronic devices by altering the properti...
We investigate the electronic band structure and the proximity exchange effect in bilayer graphene (...
We have demonstrated the deposition of EuO films on graphene by reactive molecular beam epitaxy in a...
We have demonstrated the deposition of EuO films on graphene by reactive molecular beam epitaxy in a...
The effects of the proximity contact with magnetic insulator on the spin‐dependent electronic struct...
The effects of the proximity contact with magnetic insulator on the spin-dependent electronic struct...
We investigate the electronic band structure of graphene on a series of two-dimensional magnetic tra...
The extreme versatility of two-dimensional van der Waals (vdW) materials derives from their ability ...
Graphene, a very intriguing two-dimensional Dirac electronic system with high carrier mobility, is p...
Graphene is the first model system of two-dimensional topological insulator (TI), also known as quan...
Graphene and other two-dimensional materials are receiving increasing attention as potential materia...
International audienceWe report a systematic first-principles investigation of the influence of diff...
Proximity exchange interaction between graphene electrons and nearby magnetic insulators paves the w...
he exchange proximity interaction (EPI) has been predicted to exist at the interface between a ferro...
Engineering 2D material heterostructures by combining the best of different materials in one ultimat...
Electrostatic gating enables key functionality in modern electronic devices by altering the properti...
We investigate the electronic band structure and the proximity exchange effect in bilayer graphene (...
We have demonstrated the deposition of EuO films on graphene by reactive molecular beam epitaxy in a...
We have demonstrated the deposition of EuO films on graphene by reactive molecular beam epitaxy in a...
The effects of the proximity contact with magnetic insulator on the spin‐dependent electronic struct...
The effects of the proximity contact with magnetic insulator on the spin-dependent electronic struct...
We investigate the electronic band structure of graphene on a series of two-dimensional magnetic tra...
The extreme versatility of two-dimensional van der Waals (vdW) materials derives from their ability ...
Graphene, a very intriguing two-dimensional Dirac electronic system with high carrier mobility, is p...
Graphene is the first model system of two-dimensional topological insulator (TI), also known as quan...
Graphene and other two-dimensional materials are receiving increasing attention as potential materia...