Inessential directed maps and directed homotopy equivalences

Martin Raussen

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Abstract

A directed space is a topological space X together with a subspace P(X) ⊂ X^I of
directed paths on X. A symmetry of a directed space should therefore respect both the topology of the underlying space and the topology of the associated spaces P(X)_-^+ of directed paths between a source (−) and a target (+)—up to homotopy. If it is, moreover, homotopic to the identity map—in a directed sense—such a symmetry will be called an inessential d-map, and the paper explores the algebra and topology of inessential d-maps. Comparing two d-spaces X and Y ‘up to symmetry’ yields the notion of a directed homotopy equivalence between them. Under appropriate conditions, all directed homotopy equivalences are shown to satisfy a 2-out-of-3 property. Our notion of directed homotopy equivalence does not agree completely with the one defined in Goubault (2017, arxiv:1709:05702v2) and Goubault, Farber and Sagnier (2020, J. Appl. Comput. Topol. 4, 11–27); the deviation is motivated by examples. Nevertheless, directed topological complexity, introduced in Goubault, Farber and Sagnier (2020) is shown to be invariant under our notion of directed homotopy equivalence. Finally, we show that directed homotopy equivalences result in isomorphisms on the pair component categories of directed spaces introduced in Raussen (2020, J. Appl. Comput. Topol. 4, 101-139).
OriginalsprogEngelsk
TidsskriftProceedings of the Royal Society of Edinburgh Section A: Mathematics
Vol/bind151
Udgave nummer4
Sider (fra-til)1383–1406
Antal sider24
ISSN0308-2105
DOI
StatusUdgivet - 2021

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