Untwisting information from Heegaard Floer homology
Algebraic and Geometric Topology, Tome 17 (2017) no. 4, pp. 2283-2306
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The unknotting number of a knot is the minimum number of crossings one must change to turn that knot into the unknot. We work with a generalization of the unknotting number due to Mathieu–Domergue, which we call the untwisting number. The p–untwisting number is the minimum number (over all diagrams of a knot) of full twists on at most 2p strands of a knot, with half of the strands oriented in each direction, necessary to transform that knot into the unknot. In previous work, we showed that the unknotting and untwisting numbers can be arbitrarily different. In this paper, we show that a common route for obstructing low unknotting number, the Montesinos trick, does not generalize to the untwisting number. However, we use a different approach to get conditions on the Heegaard Floer correction terms of the branched double cover of a knot with untwisting number one. This allows us to obstruct several 10– and 11–crossing knots from being unknotted by a single positive or negative twist. We also use the Ozsváth–Szabó τ invariant and the Rasmussen s invariant to differentiate between the p– and q–untwisting numbers for certain p,q > 1.

DOI : 10.2140/agt.2017.17.2283
Classification : 57M25, 57M27, 57R58
Keywords: unknotting number, Montesinos trick, untwisting number, d-invariant, Heegaard Floer correction terms, branched cover

Ince, Kenan  1

1 Department of Mathematics, Westminster College, 1840 South 1300 East, Salt Lake City, UT 84105, United States
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Ince, Kenan. Untwisting information from Heegaard Floer homology. Algebraic and Geometric Topology, Tome 17 (2017) no. 4, pp. 2283-2306. doi: 10.2140/agt.2017.17.2283

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