Abstract The presence of periodic modulation in graphene leads to a reconstruction of the band structure and formation of minibands. In an external uniform magnetic field, a fractal energy spectrum called Hofstadter butterfly is formed. Particularly interesting in this regard are superlattices with tunable modulation strength, such as electrostatically induced ones in graphene. We perform quantum transport modeling in gate-induced square two-dimensional superlattice in graphene and investigate the relation to the details of the band structure. At low magnetic field the dynamics of carriers reflects the semi-classical orbits which depend on the mini band structure. We theoretically model transverse magnetic focusing, a ballistic transport te...
We consider graphene superlattice miniband fermions probed by electronic interferometry in magnetotr...
We review recent work on superlattices in monolayer and bilayer graphene. We high-light the role of ...
This work focuses on hBN-graphene van der Waals heterostructures and their investigation via transpo...
Abstract The presence of periodic modulation in graphene leads to a reconstruction of the band struc...
The presence of periodic modulation in graphene leads to a reconstruction of the band structure and ...
In this work, the impact of two-dimensional superlattices on the electronic band structure and elect...
Electrons exposed to a two-dimensional (2D) periodic potential and a uniform, perpendicular magnetic...
We report an efficient technique to induce gatetunable two-dimensional superlattices in graphene by ...
Electrostatic superlattices have been known to significantly modify the electronic structure of low-...
Graphene superlattices were shown to exhibit high-temperature quantum oscillations due to periodic e...
Electrons moving through a spatially periodic lattice potential develop a quantized energy spectrum ...
Superlattices have attracted great interest because their use may make it possible to modify the spe...
Electrons moving through a spatially periodic lattice potential develop a quantized energy spectrum ...
Electrostatic superlattices have been known to significantly modify the electronic structure of low-...
Van der Waals heterostructures of graphene and hexagonal boron nitride feature a moiré superlattice ...
We consider graphene superlattice miniband fermions probed by electronic interferometry in magnetotr...
We review recent work on superlattices in monolayer and bilayer graphene. We high-light the role of ...
This work focuses on hBN-graphene van der Waals heterostructures and their investigation via transpo...
Abstract The presence of periodic modulation in graphene leads to a reconstruction of the band struc...
The presence of periodic modulation in graphene leads to a reconstruction of the band structure and ...
In this work, the impact of two-dimensional superlattices on the electronic band structure and elect...
Electrons exposed to a two-dimensional (2D) periodic potential and a uniform, perpendicular magnetic...
We report an efficient technique to induce gatetunable two-dimensional superlattices in graphene by ...
Electrostatic superlattices have been known to significantly modify the electronic structure of low-...
Graphene superlattices were shown to exhibit high-temperature quantum oscillations due to periodic e...
Electrons moving through a spatially periodic lattice potential develop a quantized energy spectrum ...
Superlattices have attracted great interest because their use may make it possible to modify the spe...
Electrons moving through a spatially periodic lattice potential develop a quantized energy spectrum ...
Electrostatic superlattices have been known to significantly modify the electronic structure of low-...
Van der Waals heterostructures of graphene and hexagonal boron nitride feature a moiré superlattice ...
We consider graphene superlattice miniband fermions probed by electronic interferometry in magnetotr...
We review recent work on superlattices in monolayer and bilayer graphene. We high-light the role of ...
This work focuses on hBN-graphene van der Waals heterostructures and their investigation via transpo...