From Affine to Affine : Group Theoretical Analysis of Five-fold Tilings
arXiv:2111.00921 · doi:10.1107/S2053273322002595
Abstract
The projections of the lattices, may be used as models of quasicrystals, and the particular affine extension of the symmetry as a subgroup of , discussed in the work, presents a different perspective to 5-fold symmetric quasicrystallography. Affine is obtained as the subgroup of the affine . The infinite group with local dihedral symmetry of order 10 operates on the Coxeter plane of the root and weight lattices of whose Voronoi cells tessellate the 4D Euclidean space possessing the affine symmetry. It is shown that the projection of the Voronoi cell of the root lattice tiles the Coxeter plane with thick and thin rhombuses with the action of the affine symmetry. Projection of the Voronoi cell of the weight lattice onto the Coxeter plane tessellates the plane with four different tiles: thick and thin rhombuses with different edge lengths obtained from the projection of the square faces and two types of hexagons obtained from the projection of the hexagonal faces of the Voronoi cell. Structure of the local dihedral symmetry fixing a particular point on the Coxeter plane is determined.
18 pages, 9 figures
References in corpus (5)
- The geometry from a Clifford perspective
- Group Theoretical Analysis of Quasicrystallography from Projections of Higher Dimensional Lattices Bn
- A group theoretical approach to structural transitions of icosahedral quasicrystals and point arrays
- Explicit Construction of the Voronoi and Delaunay Cells of W(An) and W(Dn) Lattices and Their Facets
- Prototiles and Tilings from Voronoi and Delone cells of the Root Lattice A_n