We report an efficient technique to induce gatetunable two-dimensional superlattices in graphene by the combined action of a back gate and a few-layer graphene patterned bottom gate complementary to existing methods. The patterned gates in our approach can be easily fabricated and implemented in van der Waals stacking procedures, allowing flexible use of superlattices with arbitrary geometry. In transport measurements on a superlattice with a lattice constant a = 40 nm, well-pronounced satellite Dirac points and signatures of the Hofstadter butterfly including a nonmonotonic quantum Hall response are observed. Furthermore, the experimental results are accurately reproduced in transport simulations and show good agreement with features in th...
We report on transport properties of monolayer graphene with a laterally modulated potential profile...
The specific rotational alignment of two-dimensional lattices results in a moiré superlattice with ...
Van der Waals heterostructures of graphene and hexagonal boron nitride feature a moiré superlattice ...
We report an efficient technique to induce gatetunable two-dimensional superlattices in graphene by ...
In this work, the impact of two-dimensional superlattices on the electronic band structure and elect...
Electrostatic superlattices have been known to significantly modify the electronic structure of low-...
Electrostatic superlattices have been known to significantly modify the electronic structure of low-...
Abstract The presence of periodic modulation in graphene leads to a reconstruction of the band struc...
Superlattices have attracted great interest because their use may make it possible to modify the spe...
Superlattice in graphene generates extra Dirac points in the band structure and their number depends...
This work focuses on hBN-graphene van der Waals heterostructures and their investigation via transpo...
We review recent work on superlattices in monolayer and bilayer graphene. We high-light the role of ...
The presence of periodic modulation in graphene leads to a reconstruction of the band structure and ...
The specific rotational alignment of two-dimensional lattices results in a moire superlattice with a...
We formulate a low energy effective Hamiltonian to study superlattices in bilayer graphene (BLG) usi...
We report on transport properties of monolayer graphene with a laterally modulated potential profile...
The specific rotational alignment of two-dimensional lattices results in a moiré superlattice with ...
Van der Waals heterostructures of graphene and hexagonal boron nitride feature a moiré superlattice ...
We report an efficient technique to induce gatetunable two-dimensional superlattices in graphene by ...
In this work, the impact of two-dimensional superlattices on the electronic band structure and elect...
Electrostatic superlattices have been known to significantly modify the electronic structure of low-...
Electrostatic superlattices have been known to significantly modify the electronic structure of low-...
Abstract The presence of periodic modulation in graphene leads to a reconstruction of the band struc...
Superlattices have attracted great interest because their use may make it possible to modify the spe...
Superlattice in graphene generates extra Dirac points in the band structure and their number depends...
This work focuses on hBN-graphene van der Waals heterostructures and their investigation via transpo...
We review recent work on superlattices in monolayer and bilayer graphene. We high-light the role of ...
The presence of periodic modulation in graphene leads to a reconstruction of the band structure and ...
The specific rotational alignment of two-dimensional lattices results in a moire superlattice with a...
We formulate a low energy effective Hamiltonian to study superlattices in bilayer graphene (BLG) usi...
We report on transport properties of monolayer graphene with a laterally modulated potential profile...
The specific rotational alignment of two-dimensional lattices results in a moiré superlattice with ...
Van der Waals heterostructures of graphene and hexagonal boron nitride feature a moiré superlattice ...