Efficient algorithms to decide tightness
Abstract
Tightness is a generalisation of the notion of convexity: a space is tight if and only if it is "as convex as possible", given its topological constraints. For a simplicial complex, deciding tightness has a straightforward exponential time algorithm, but efficient methods to decide tightness are only known in the trivial setting of triangulated surfaces. In this article, we present a new polynomial time procedure to decide tightness for triangulations of -manifolds -- a problem which previously was thought to be hard. Furthermore, we describe an algorithm to decide general tightness in the case of -dimensional combinatorial manifolds which is fixed parameter tractable in the treewidth of the -skeletons of their vertex links, and we present an algorithm to decide -tightness for weak pseudomanifolds of arbitrary but fixed dimension which is fixed parameter tractable in the treewidth of the dual graph of .
Cite
@article{arxiv.1412.1547,
title = {Efficient algorithms to decide tightness},
author = {Bhaskar Bagchi and Benjamin A. Burton and Basudeb Datta and Nitin Singh and Jonathan Spreer},
journal= {arXiv preprint arXiv:1412.1547},
year = {2018}
}
Comments
18 pages, 3 figures