Single crystal surfaces with periodic overlayers, such as graphene on hexagonal metal substrates, are found to exhibit, apart from their intrinsic periodicity, additional long-range order expressed by approximate surface lattices with large lattice constants. This phenomenon can be described as geometrically analogous to lateral interference effects resulting in periodic moiré patterns which are characterized by two-dimensional moiré lattices. Here we discuss in detail the mathematical formalism determining such moiré patterns based on concepts of two-dimensional Fourier transformation including coincidence lattices. The formalism provides simple relations that allow one to calculate possible moiré lattice vectors in their dependence on rot...
Crystals with two-dimensional lattice structure, such as graphene, can be obtained from bulk crystal...
We present a computational model for periodic pattern perception based on the mathematical theory of...
International audienceUnlike conventional two-dimensional (2D) semiconductor superlattices, moiré pa...
Single crystal surfaces with periodic overlayers, such as graphene on hexagonal metal substrates, ar...
We present a systematic investigation of two coinciding lattices and their spatial beating frequenci...
3Two-dimensional materials on metallic surfaces or stacked one on top of the other can form a variet...
4siMoiré superstructures are common for epitaxial graphene on transition metal surfaces and can stro...
Moiré lattices consist of two superimposed identical periodic structures with a relative rotation an...
A real-space approach for the calculation of the moiré lattice parameters for superstructures formed...
Self-assembly of benzene-1,3,5-tricarboxylic acid (trimesic acid - TMA) monolayers at the alkanoic a...
We extend the patterning capability of laser interference lithography (LIL) to fabricate complex two...
Moiré patterns from two-dimensional (2D) graphene heterostructures assembled via van der Waals inter...
Moire phenomena of different types are frequently encountered in electronic imaging. Most common are...
We present a phenomenological theory of the low energy moir\'e minibands of Dirac electrons in graph...
The dynamical theory of moiré patterns is developed on the basis of the two-beam approximation. The ...
Crystals with two-dimensional lattice structure, such as graphene, can be obtained from bulk crystal...
We present a computational model for periodic pattern perception based on the mathematical theory of...
International audienceUnlike conventional two-dimensional (2D) semiconductor superlattices, moiré pa...
Single crystal surfaces with periodic overlayers, such as graphene on hexagonal metal substrates, ar...
We present a systematic investigation of two coinciding lattices and their spatial beating frequenci...
3Two-dimensional materials on metallic surfaces or stacked one on top of the other can form a variet...
4siMoiré superstructures are common for epitaxial graphene on transition metal surfaces and can stro...
Moiré lattices consist of two superimposed identical periodic structures with a relative rotation an...
A real-space approach for the calculation of the moiré lattice parameters for superstructures formed...
Self-assembly of benzene-1,3,5-tricarboxylic acid (trimesic acid - TMA) monolayers at the alkanoic a...
We extend the patterning capability of laser interference lithography (LIL) to fabricate complex two...
Moiré patterns from two-dimensional (2D) graphene heterostructures assembled via van der Waals inter...
Moire phenomena of different types are frequently encountered in electronic imaging. Most common are...
We present a phenomenological theory of the low energy moir\'e minibands of Dirac electrons in graph...
The dynamical theory of moiré patterns is developed on the basis of the two-beam approximation. The ...
Crystals with two-dimensional lattice structure, such as graphene, can be obtained from bulk crystal...
We present a computational model for periodic pattern perception based on the mathematical theory of...
International audienceUnlike conventional two-dimensional (2D) semiconductor superlattices, moiré pa...