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Reproducibility in the fabrication and physics of moiré materials
Overlaying two atomic layers with a slight lattice mismatch or at a small rotation angle
creates a moiré superlattice, which has properties that are markedly modified from (and at …
creates a moiré superlattice, which has properties that are markedly modified from (and at …
Mechanical, electronic, optical, piezoelectric and ferroic properties of strained graphene and other strained monolayers and multilayers: an update
This is an update of a previous review (Naumis et al 2017 Rep. Prog. Phys. 80 096501).
Experimental and theoretical advances for straining graphene and other metallic, insulating …
Experimental and theoretical advances for straining graphene and other metallic, insulating …
Magic-angle helical trilayer graphene
We propose magic-angle helical trilayer graphene (HTG), a helical structure featuring
identical rotation angles between three consecutive layers of graphene, as a unique and …
identical rotation angles between three consecutive layers of graphene, as a unique and …
Charge-polarized interfacial superlattices in marginally twisted hexagonal boron nitride
When two-dimensional crystals are brought into close proximity, their interaction results in
reconstruction of electronic spectrum and crystal structure. Such reconstruction strongly …
reconstruction of electronic spectrum and crystal structure. Such reconstruction strongly …
One-dimensional proximity superconductivity in the quantum Hall regime
Extensive efforts have been undertaken to combine superconductivity and the quantum Hall
effect so that Cooper-pair transport between superconducting electrodes in Josephson …
effect so that Cooper-pair transport between superconducting electrodes in Josephson …
Stacking domains and dislocation networks in marginally twisted bilayers of transition metal dichalcogenides
We apply a multiscale modeling approach to study lattice reconstruction in marginally
twisted bilayers of transition metal dichalcogenides (TMD). For this, we develop density …
twisted bilayers of transition metal dichalcogenides (TMD). For this, we develop density …
Domino-like stacking order switching in twisted monolayer–multilayer graphene
Atomic reconstruction has been widely observed in two-dimensional van der Waals
structures with small twist angles,,,,,–. This unusual behaviour leads to many novel …
structures with small twist angles,,,,,–. This unusual behaviour leads to many novel …
Strong mid-infrared photoresponse in small-twist-angle bilayer graphene
Abstract Small-twist-angle (< 2°) bilayer graphene has received extraordinary attention
recently due to its exciting physical properties,,,,,,,,,–. Compared with monolayer graphene …
recently due to its exciting physical properties,,,,,,,,,–. Compared with monolayer graphene …
In situ manipulation of van der Waals heterostructures for twistronics
In van der Waals heterostructures, electronic bands of two-dimensional (2D) materials, their
nontrivial topology, and electron-electron interactions can be markedly changed by a moiré …
nontrivial topology, and electron-electron interactions can be markedly changed by a moiré …
Moiré metrology of energy landscapes in van der Waals heterostructures
The emerging field of twistronics, which harnesses the twist angle between two-dimensional
materials, represents a promising route for the design of quantum materials, as the twist …
materials, represents a promising route for the design of quantum materials, as the twist …