Algorithms in 4-manifold topology
We show that there exists an algorithm that takes as input two closed, simply connected, topological 4-manifolds and decides whether or not these 4-manifolds are homeomorphic. In particular, we explain in detail how closed, simply connected, topological 4-manifolds can be naturally represented by a...
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Zusammenfassung: | We show that there exists an algorithm that takes as input two closed, simply
connected, topological 4-manifolds and decides whether or not these 4-manifolds
are homeomorphic. In particular, we explain in detail how closed, simply
connected, topological 4-manifolds can be naturally represented by a Kirby
diagram consisting only of 2-handles. This representation is used as input for
our algorithm. Along the way, we develop an algorithm to compute the
Kirby-Siebenmann invariant of a closed, simply connected, topological
4-manifold from any of its Kirby diagrams and describe an algorithm that
decides whether or not two intersection forms are isometric.
In a slightly different direction, we discuss the decidability of the stable
classification of smooth manifolds with more general fundamental groups. Here
we show that there exists an algorithm that takes as input two closed,
oriented, smooth 4-manifolds with fundamental groups isomorphic to a finite
group with cyclic Sylow 2-subgroup, an infinite cyclic group, or a group of
geometric dimension at most 3 (in the latter case we additionally assume that
the universal covers of both 4-manifolds are not spin), and decides whether or
not these two 4-manifolds are orientation-preserving stably diffeomorphic. |
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DOI: | 10.48550/arxiv.2411.08775 |