| openaire: EC/H2020/766025/EU//QuESTechCrystal fields occur due to a potential difference between chemically different atomic species. In van der Waals heterostructures such fields are naturally present perpendicular to the planes. It has been realized recently that twisted graphene multilayers provide powerful playgrounds to engineer electronic properties by the number of layers, the twist angle, applied electric biases, electronic interactions, and elastic relaxations, but crystal fields have not received the attention they deserve. Here, we show that the band structure of large-angle twisted double bilayer graphene is strongly modified by crystal fields. In particular, we experimentally demonstrate that twisted double bilayer graphene, ...
Developing graphene-based nanoelectronics hinges on opening a band gap in the electronic structure o...
International audienceIn this work, we study the structural and electronic properties of boron nitri...
In this work, we study the structural and electronic properties of boron nitride bilayers sandwiched...
| openaire: EC/H2020/766025/EU//QuESTechCrystal fields occur due to a potential difference between c...
| openaire: EC/H2020/766025/EU//QuESTechCrystal fields occur due to a potential difference between c...
The bandstructure of a material, playing an important role in its electron transport property, is us...
Electron-electron interactions play an important role in graphene and related systems and can induce...
We address the intrinsic polarization and screening of an external electric field in a broad range o...
Developing graphene-based nanoelectronics hinges on opening a band gap in the electronic structure o...
Twisted double bilayer graphene has recently emerged as an interesting moiré material that exhibits ...
Developing graphene-based nanoelectronics hinges on opening a band gap in the electronic structure o...
In this work, we study the structural and electronic properties of boron nitride bilayers sandwiched...
We report results of first-principles density functional theory calculations, which introduce a new ...
Developing graphene-based nanoelectronics hinges on opening a band gap in the electronic structure o...
International audienceIn this work, we study the structural and electronic properties of boron nitri...
Developing graphene-based nanoelectronics hinges on opening a band gap in the electronic structure o...
International audienceIn this work, we study the structural and electronic properties of boron nitri...
In this work, we study the structural and electronic properties of boron nitride bilayers sandwiched...
| openaire: EC/H2020/766025/EU//QuESTechCrystal fields occur due to a potential difference between c...
| openaire: EC/H2020/766025/EU//QuESTechCrystal fields occur due to a potential difference between c...
The bandstructure of a material, playing an important role in its electron transport property, is us...
Electron-electron interactions play an important role in graphene and related systems and can induce...
We address the intrinsic polarization and screening of an external electric field in a broad range o...
Developing graphene-based nanoelectronics hinges on opening a band gap in the electronic structure o...
Twisted double bilayer graphene has recently emerged as an interesting moiré material that exhibits ...
Developing graphene-based nanoelectronics hinges on opening a band gap in the electronic structure o...
In this work, we study the structural and electronic properties of boron nitride bilayers sandwiched...
We report results of first-principles density functional theory calculations, which introduce a new ...
Developing graphene-based nanoelectronics hinges on opening a band gap in the electronic structure o...
International audienceIn this work, we study the structural and electronic properties of boron nitri...
Developing graphene-based nanoelectronics hinges on opening a band gap in the electronic structure o...
International audienceIn this work, we study the structural and electronic properties of boron nitri...
In this work, we study the structural and electronic properties of boron nitride bilayers sandwiched...