Practical Software for Triangulating and Simplifying 4-Manifolds

Fuente: arXiv
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Main Author: Burke, Rhuaidi Antonio
Format: Preprint
Published: 2024
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author Burke, Rhuaidi Antonio
author_facet Burke, Rhuaidi Antonio
contents Dimension 4 is the first dimension in which exotic smooth manifold pairs appear -- manifolds which are topologically the same but for which there is no smooth deformation of one into the other. Whilst smooth and triangulated 4-manifolds do coincide, comparatively little work has been done towards gaining an understanding of smooth 4-manifolds from the discrete and algorithmic perspective. In this paper we introduce new software tools to make this possible, including a software implementation of an algorithm which enables us to build triangulations of 4-manifolds from Kirby diagrams, as well as a new heuristic for simplifying 4-manifold triangulations. Using these tools, we present new triangulations of several bounded exotic pairs, corks and plugs (objects responsible for "exoticity"), as well as the smallest known triangulation of the fundamental K3 surface. The small size of these triangulations benefit us by revealing fine structural features in 4-manifold triangulations.
format Preprint
id arxiv_https___arxiv_org_abs_2402_15087
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Practical Software for Triangulating and Simplifying 4-Manifolds
Burke, Rhuaidi Antonio
Geometric Topology
Computational Geometry
Dimension 4 is the first dimension in which exotic smooth manifold pairs appear -- manifolds which are topologically the same but for which there is no smooth deformation of one into the other. Whilst smooth and triangulated 4-manifolds do coincide, comparatively little work has been done towards gaining an understanding of smooth 4-manifolds from the discrete and algorithmic perspective. In this paper we introduce new software tools to make this possible, including a software implementation of an algorithm which enables us to build triangulations of 4-manifolds from Kirby diagrams, as well as a new heuristic for simplifying 4-manifold triangulations. Using these tools, we present new triangulations of several bounded exotic pairs, corks and plugs (objects responsible for "exoticity"), as well as the smallest known triangulation of the fundamental K3 surface. The small size of these triangulations benefit us by revealing fine structural features in 4-manifold triangulations.
title Practical Software for Triangulating and Simplifying 4-Manifolds
topic Geometric Topology
Computational Geometry
url https://arxiv.org/abs/2402.15087