Regular Tessellations of Maximally Symmetric Hyperbolic Manifolds

Author:

Brandts Jan1,Křížek Michal2ORCID,Somer Lawrence3ORCID

Affiliation:

1. Faculty of Science, KDV, University of Amsterdam, P.O. Box 94248, 1090 GE Amsterdam, The Netherlands

2. Institute of Mathematics, Czech Academy of Sciences, Žitná 25, 115 67 Prague, Czech Republic

3. Department of Mathematics, Catholic University of America, Washington, DC 20064, USA

Abstract

We first briefly summarize several well-known properties of regular tessellations of the three two-dimensional maximally symmetric manifolds, E2, S2, and H2, by bounded regular tiles. For instance, there exist infinitely many regular tessellations of the hyperbolic plane H2 by curved hyperbolic equilateral triangles whose vertex angles are 2π/d for d=7,8,9,… On the other hand, we prove that there is no curved hyperbolic regular tetrahedron which tessellates the three-dimensional hyperbolic space H3. We also show that a regular tessellation of H3 can only consist of the hyperbolic cubes, hyperbolic regular icosahedra, or two types of hyperbolic regular dodecahedra. There exist only two regular hyperbolic space-fillers of H4. If n>4, then there exists no regular tessellation of Hn.

Funder

Czech Academy of Sciences

GAČR

Publisher

MDPI AG

Subject

Physics and Astronomy (miscellaneous),General Mathematics,Chemistry (miscellaneous),Computer Science (miscellaneous)

Reference16 articles.

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2. Penrose, R. (2005). The Road to Reality, Vintage Books.

3. Brandts, J., Korotov, S., and Křížek, M. (2020). Simplicial Partitions with Applications to the Finite Element Method, Springer International Publishing.

4. Beardon, A.F. (1983). The Geometry of Discrete Groups, Springer.

5. The story of the 120-cell;Stillwell;Not. Am. Math. Soc.,2001

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