International audienceWe demonstrate that stacking layered materials allows a novel type of strain engineering where each layer is strained independently, which we call heterostrain. We combine detailed structural and spectroscopic measurements with tight-binding calculations to show that small uniaxial heterostrain suppresses Dirac cones and leads to the emergence of flat bands in twisted graphene layers (TGLs). Moreover, we demonstrate that heterostrain reconstructs much more severely the energy spectrum of TGLs than homostrain for which both layers are strained identically ; a result which should apply to virtually all van der Waals structure opening exciting possibilities for straintronics with 2D materials
International audienceThe study of moiré engineering started with the advent of van der Waals hetero...
We report deterministic control over moir\'e superlattice geometry in twisted bilayer graphene by im...
The analysis of the electronic properties of strained or lattice deformed graphene combines ideas fr...
International audienceWe demonstrate that stacking layered materials allows a novel type of strain e...
Supplementary information available on requestInternational audienceThe moiré of twisted graphene bi...
Abstract The ability to precisely control moiré patterns in two-dimensional materials has enabled th...
The discovery of correlated phases in twisted moiré superlattices accelerated the search for low-di...
We continue the discussion of Van der Waals heterostructures for the case of twisted blayer graphene...
Graphene moiré superlattice formed by rotating two graphene sheets can host strongly correlated and ...
We investigate the proximity-induced spin-orbit coupling in heterostructures of twisted graphene and...
Crystals with two-dimensional lattice structure, such as graphene, can be obtained from bulk crystal...
Using first-principles calculations, we report a large band-gap opening in the van der Waals heteros...
The strain in hybrid van der Waals heterostructures, made of two distinct two-dimensional van der Wa...
Strain modulation is a direct and effective method to tune the lattice structure of the 2D materials...
Twisted graphene multilayers have been demonstrated to yield a versatile playground to engineer cont...
International audienceThe study of moiré engineering started with the advent of van der Waals hetero...
We report deterministic control over moir\'e superlattice geometry in twisted bilayer graphene by im...
The analysis of the electronic properties of strained or lattice deformed graphene combines ideas fr...
International audienceWe demonstrate that stacking layered materials allows a novel type of strain e...
Supplementary information available on requestInternational audienceThe moiré of twisted graphene bi...
Abstract The ability to precisely control moiré patterns in two-dimensional materials has enabled th...
The discovery of correlated phases in twisted moiré superlattices accelerated the search for low-di...
We continue the discussion of Van der Waals heterostructures for the case of twisted blayer graphene...
Graphene moiré superlattice formed by rotating two graphene sheets can host strongly correlated and ...
We investigate the proximity-induced spin-orbit coupling in heterostructures of twisted graphene and...
Crystals with two-dimensional lattice structure, such as graphene, can be obtained from bulk crystal...
Using first-principles calculations, we report a large band-gap opening in the van der Waals heteros...
The strain in hybrid van der Waals heterostructures, made of two distinct two-dimensional van der Wa...
Strain modulation is a direct and effective method to tune the lattice structure of the 2D materials...
Twisted graphene multilayers have been demonstrated to yield a versatile playground to engineer cont...
International audienceThe study of moiré engineering started with the advent of van der Waals hetero...
We report deterministic control over moir\'e superlattice geometry in twisted bilayer graphene by im...
The analysis of the electronic properties of strained or lattice deformed graphene combines ideas fr...