Most quasicrystals can be generated by the cut-and-project method from higher dimensional parent lattices. In doing so they lose the periodic order their parent lattice possess, replaced with aperiodic order, due to the irrationality of the projection. However, perfect periodic order is discovered in the perpendicular space when gluing the cut window boundaries together to form a curved loop. In the case of a 1D quasicrystal projected from a 2D lattice, the irrationally sloped cut region is bounded by two parallel lines. When it is extrinsically curved into a cylinder, a line defect is found on the cylinder. Resolving this geometrical frustration removes the line defect to preserve helical paths on the cylinder. The degree of frustration is...
In crystallography, it was an axiom that any material with a diffraction pattern consisting of sharp...
The plastic deformation of quasicrystals (QC) is ruled by two types of singularities of the QC orde...
In order to generate normal Penrose tilings by inflation/deflation, decisions have to be made regard...
Most quasicrystals can be generated by the cut-and-project method from higher dimensional parent lat...
We present a new algorithm for the generation of quasicrystalline structures. It is related to the c...
There are several incentives to identify the analogues of dislocations and disclinations in quasicry...
We study the structural transformations induced, via the cut-and-project method, in quasicrystals an...
We show how the standard cut and project method can be adapted to build quasiperiodic geometrical mo...
To appear in IRMA Lectures in Mathematics and Theoretical PhysicsOne-dimensional cut-and-project poi...
Quasicrystals are orientationally-ordered structures with classically forbidden rotation symmetries ...
The problem of local definition of general projected quasicrystals (QC) in two and three dimensions ...
The transformation from quasicrystal to crystal tilings using the projection formalism can be done i...
There are several ways to mathematically define quasicrystalline patterns. We adopt here the “cut an...
Quasicrystals are atomic structures that exhibit long-range quasiperiodic translational order and an...
Linearly repetitive cut and project sets are mathematical models for perfectly ordered quasicrystals...
In crystallography, it was an axiom that any material with a diffraction pattern consisting of sharp...
The plastic deformation of quasicrystals (QC) is ruled by two types of singularities of the QC orde...
In order to generate normal Penrose tilings by inflation/deflation, decisions have to be made regard...
Most quasicrystals can be generated by the cut-and-project method from higher dimensional parent lat...
We present a new algorithm for the generation of quasicrystalline structures. It is related to the c...
There are several incentives to identify the analogues of dislocations and disclinations in quasicry...
We study the structural transformations induced, via the cut-and-project method, in quasicrystals an...
We show how the standard cut and project method can be adapted to build quasiperiodic geometrical mo...
To appear in IRMA Lectures in Mathematics and Theoretical PhysicsOne-dimensional cut-and-project poi...
Quasicrystals are orientationally-ordered structures with classically forbidden rotation symmetries ...
The problem of local definition of general projected quasicrystals (QC) in two and three dimensions ...
The transformation from quasicrystal to crystal tilings using the projection formalism can be done i...
There are several ways to mathematically define quasicrystalline patterns. We adopt here the “cut an...
Quasicrystals are atomic structures that exhibit long-range quasiperiodic translational order and an...
Linearly repetitive cut and project sets are mathematical models for perfectly ordered quasicrystals...
In crystallography, it was an axiom that any material with a diffraction pattern consisting of sharp...
The plastic deformation of quasicrystals (QC) is ruled by two types of singularities of the QC orde...
In order to generate normal Penrose tilings by inflation/deflation, decisions have to be made regard...