Moire patterns result from setting a 2D material such as graphene on another 2D material with a small twist angle or from the lattice mismatch of 2D heterostructures. We present a continuum model for the elastic energy of these bilayer moire structures that includes an intralayer elastic energy and an interlayer misfit energy that is minimized at two stackings (disregistries). We show by theory and computation that the displacement field that minimizes the global elastic energy subject to a global boundary constraint gives large alternating regions of one of the two energy-minimizing stackings separated by domain walls. We derive a model for the domain wall structure from the continuum bilayer energy and give a rigorous asymptotic estimat...
Unlike conventional two-dimensional (2D) semiconductor superlattices, moiré patterns in 2D materials...
International audienceUnlike conventional two-dimensional (2D) semiconductor superlattices, moiré pa...
International audienceUnlike conventional two-dimensional (2D) semiconductor superlattices, moiré pa...
Unlike conventional two-dimensional (2D) semiconductor superlattices, moir\'{e} patterns in 2D mater...
We give a complete and rigorous derivation of the mechanical energy for twisted 2D bilayer heterostr...
The emerging field of twistronics, which harnesses the twist angle between two-dimensional materials...
Twisted bilayer graphene is a rich condensed matter system, which allows one to tune energy scales a...
We present a general method to analyze the topological nature of the domain boundary connectivity th...
We derive BM-like continuum models for the bands of superlattice heterostructures formed out of Fe-c...
The Bistritzer-MacDonald continuum model (BM model) describes the low-energy moir\'e bands for twist...
In recent years, van der Waals (vdW) heterostructures and homostructures, which consist of stacks of...
The domain walls between AB- and BA-stacked gapped bilayer graphene have garnered intense interest a...
The electronic and structural properties of atomically thin materials can be controllably tuned by a...
Moir\'e patterns made of two-dimensional (2D) materials represent highly tunable electronic Hamilton...
The electronic and structural properties of atomically thin materials can be controllably tuned by a...
Unlike conventional two-dimensional (2D) semiconductor superlattices, moiré patterns in 2D materials...
International audienceUnlike conventional two-dimensional (2D) semiconductor superlattices, moiré pa...
International audienceUnlike conventional two-dimensional (2D) semiconductor superlattices, moiré pa...
Unlike conventional two-dimensional (2D) semiconductor superlattices, moir\'{e} patterns in 2D mater...
We give a complete and rigorous derivation of the mechanical energy for twisted 2D bilayer heterostr...
The emerging field of twistronics, which harnesses the twist angle between two-dimensional materials...
Twisted bilayer graphene is a rich condensed matter system, which allows one to tune energy scales a...
We present a general method to analyze the topological nature of the domain boundary connectivity th...
We derive BM-like continuum models for the bands of superlattice heterostructures formed out of Fe-c...
The Bistritzer-MacDonald continuum model (BM model) describes the low-energy moir\'e bands for twist...
In recent years, van der Waals (vdW) heterostructures and homostructures, which consist of stacks of...
The domain walls between AB- and BA-stacked gapped bilayer graphene have garnered intense interest a...
The electronic and structural properties of atomically thin materials can be controllably tuned by a...
Moir\'e patterns made of two-dimensional (2D) materials represent highly tunable electronic Hamilton...
The electronic and structural properties of atomically thin materials can be controllably tuned by a...
Unlike conventional two-dimensional (2D) semiconductor superlattices, moiré patterns in 2D materials...
International audienceUnlike conventional two-dimensional (2D) semiconductor superlattices, moiré pa...
International audienceUnlike conventional two-dimensional (2D) semiconductor superlattices, moiré pa...