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The Alexander and Markov theorems for strongly involutive links

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arxiv 2406.13592 v1 pith:WSBCHHDF submitted 2024-06-19 math.GT

classification math.GT
keywords linksstronglyclosureinvolutivemarkovbraidsequivariantalexander
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The Alexander theorem (1923) and the Markov theorem (1936) are two classical results in knot theory that show respectively that every link is the closure of a braid and that braids that have the same closure are related by a finite number of operations called Markov moves. This paper presents specialized versions of these two classical theorems for a class of links in S3 preserved by an involution, that we call strongly involutive links. When connected, these links are known as strongly invertible knots, and have been extensively studied. We develop an equivariant closure map that, given two palindromic braids, produces a strongly involutive link. We demonstrate that this map is surjective up to equivalence of strongly involutive links. Furthermore, we establish that pairs of palindromic braids that have the same equivariant closure are related by an equivariant version of the original Markov moves.

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  1. Khovanov homology and equivariant surfaces

    math.GT 2025-07 conditional novelty 7.0 of 10

    The Borel refinement of Bar-Natan Khovanov homology detects that equivariant slice genus can be arbitrarily larger than isotopy-equivariant slice genus.

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