Electrons moving through a spatially periodic lattice potential develop a quantized energy spectrum consisting of discrete Bloch bands. In two dimensions, electrons moving through a magnetic field also develop a quantized energy spectrum, consisting of highly degenerate Landau energy levels. When subject to both a magnetic field and a periodic electrostatic potential, two-dimensional systems of electrons exhibit a self-similar recursive energy spectrum(1). Known as Hofstadter\u27s butterfly, this complex spectrum results from an interplay between the characteristic lengths associated with the two quantizing fields(1-10), and is one of the first quantum fractals discovered in physics. In the decades since its prediction, experimental attempt...
When submitted both to a magnetic field and a periodic potential, the energy spectrum of electrons e...
Van der Waals heterostructures of graphene and hexagonal boron nitride feature a moiré superlattice...
The energy spectrum of a two-dimensional electron system in a perpendicular homogeneous magnetic f...
Electrons moving through a spatially periodic lattice potential develop a quantized energy spectrum ...
Self-similarity and fractals have fascinated researchers across various disciplines. In graphene pla...
It has been shown that Bernal stacked bilayer graphene (BLG) in a uniform magnetic field demonstrate...
Electrons exposed to a two-dimensional (2D) periodic potential and a uniform, perpendicular magnetic...
Van der Waals heterostructures of graphene and hexagonal boron nitride feature a moiré superlattice ...
Graphene superlattices were shown to exhibit high-temperature quantum oscillations due to periodic e...
The Hofstadter butterfly spectrum for Landau levels in a two-dimensional periodic lattice is a rare ...
ABSTRACT: The Hofstadter butterfly spectrum for Landau levels in a two-dimensional periodic lattice ...
It has been shown that Bernal stacked bilayer graphene (BLG) in a uniform magnetic field demonstrate...
Superlattices have attracted great interest because their use may make it possible to modify the spe...
The fractal spectrum of magnetic minibands (Hofstadter butterfly), induced by the moiré superlattice...
Abstract The presence of periodic modulation in graphene leads to a reconstruction of the band struc...
When submitted both to a magnetic field and a periodic potential, the energy spectrum of electrons e...
Van der Waals heterostructures of graphene and hexagonal boron nitride feature a moiré superlattice...
The energy spectrum of a two-dimensional electron system in a perpendicular homogeneous magnetic f...
Electrons moving through a spatially periodic lattice potential develop a quantized energy spectrum ...
Self-similarity and fractals have fascinated researchers across various disciplines. In graphene pla...
It has been shown that Bernal stacked bilayer graphene (BLG) in a uniform magnetic field demonstrate...
Electrons exposed to a two-dimensional (2D) periodic potential and a uniform, perpendicular magnetic...
Van der Waals heterostructures of graphene and hexagonal boron nitride feature a moiré superlattice ...
Graphene superlattices were shown to exhibit high-temperature quantum oscillations due to periodic e...
The Hofstadter butterfly spectrum for Landau levels in a two-dimensional periodic lattice is a rare ...
ABSTRACT: The Hofstadter butterfly spectrum for Landau levels in a two-dimensional periodic lattice ...
It has been shown that Bernal stacked bilayer graphene (BLG) in a uniform magnetic field demonstrate...
Superlattices have attracted great interest because their use may make it possible to modify the spe...
The fractal spectrum of magnetic minibands (Hofstadter butterfly), induced by the moiré superlattice...
Abstract The presence of periodic modulation in graphene leads to a reconstruction of the band struc...
When submitted both to a magnetic field and a periodic potential, the energy spectrum of electrons e...
Van der Waals heterostructures of graphene and hexagonal boron nitride feature a moiré superlattice...
The energy spectrum of a two-dimensional electron system in a perpendicular homogeneous magnetic f...