The Euler characteristic as a basis for teaching topology concepts to crystallographers

© Bartosz Naskręcki et al. 2022.

Détails bibliographiques
Publié dans:Journal of applied crystallography. - 1998. - 55(2022), Pt 1 vom: 01. Feb., Seite 154-167
Auteur principal: Naskręcki, Bartosz (Auteur)
Autres auteurs: Jaskolski, Mariusz, Dauter, Zbigniew
Format: Article en ligne
Langue:English
Publié: 2022
Accès à la collection:Journal of applied crystallography
Sujets:Journal Article Descartes’ theorem Dirichlet domains Euler’s polyhedral formula Harriot theorem asymmetric unit modified Euler characteristic space-filling polyhedra
Description
Résumé:© Bartosz Naskręcki et al. 2022.
The simple Euler polyhedral formula, expressed as an alternating count of the bounding faces, edges and vertices of any polyhedron, V - E + F = 2, is a fundamental concept in several branches of mathematics. Obviously, it is important in geometry, but it is also well known in topology, where a similar telescoping sum is known as the Euler characteristic χ of any finite space. The value of χ can also be computed for the unit polyhedra (such as the unit cell, the asymmetric unit or Dirichlet domain) which build, in a symmetric fashion, the infinite crystal lattices in all space groups. In this application χ has a modified form (χm) and value because the addends have to be weighted according to their symmetry. Although derived in geometry (in fact in crystallography), χm has an elegant topological interpretation through the concept of orbifolds. Alternatively, χm can be illustrated using the theorems of Harriot and Descartes, which predate the discovery made by Euler. Those historical theorems, which focus on angular defects of polyhedra, are beautifully expressed in the formula of de Gua de Malves. In a still more general interpretation, the theorem of Gauss-Bonnet links the Euler characteristic with the general curvature of any closed space. This article presents an overview of these interesting aspects of mathematics with Euler's formula as the leitmotif. Finally, a game is designed, allowing readers to absorb the concept of the Euler characteristic in an entertaining way
Description:Date Revised 22.08.2024
published: Electronic-eCollection
Citation Status PubMed-not-MEDLINE
ISSN:0021-8898
DOI:10.1107/S160057672101205X