An Enhanced Euler Characteristic of Sutured Instanton Homology

Author:

Li Zhenkun1,Ye Fan2

Affiliation:

1. Department of Mathematics , Stanford University, 450 Jane Stanford way, Stanford, CA 94305, USA

2. Department of Mathematics , Harvard University, 1 Oxford Street, Cambridge, MA 02138, USA

Abstract

AbstractFor a balanced sutured manifold $(M,\gamma )$, we construct a decomposition of $SHI(M,\gamma )$ with respect to torsions in $H=H_{1}(M;\mathbb {Z})$, which generalizes the decomposition of $I^{\sharp }(Y)$ in a previous work of the authors. This decomposition can be regarded as a candidate for the counterpart of the torsion spin$^{c}$ decompositions in $SFH(M,\gamma )$. Based on this decomposition, we define an enhanced Euler characteristic $\chi _{\textrm {en}}(SHI(M,\gamma ))\in \mathbb {Z}[H]/\pm H$ and prove that $\chi _{\textrm {en}}(SHI(M,\gamma ))=\chi (SFH(M,\gamma ))$. This provides a better lower bound on $\dim _{\mathbb {C}}SHI(M,\gamma )$ than the graded Euler characteristic $\chi _{\textrm {gr}}(SHI(M,\gamma ))$. As applications, we prove instanton knot homology detects the unknot in any instanton L-space and show that the conjecture $KHI(Y,K)\cong \widehat {HFK}(Y,K)$ holds for all $(1,1)$-L-space knots and constrained knots in lens spaces, which include all torus knots and many hyperbolic knots in lens spaces.

Publisher

Oxford University Press (OUP)

Subject

General Mathematics

Reference68 articles.

1. Counting genus one fibered knots in lens spaces;Baker;Michigan Math. J.,2014

2. Grid diagrams for lens spaces and combinatorial knot Floer homology;Baker;Int. Math. Res. Not.,2008

3. Tunnel number one, genus-one fibered knots;Baker;Commun. Anal. Geom.,2009

4. Heegaard Floer homology and genus one, one boundary component open books;Baldwin;J. Topol.,2008

5. Khovanov homology and the cinquefoil;Baldwin,2021

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1. Small Dehn surgery and SU(2);Geometry & Topology;2024-07-18

2. Instanton Floer homology, sutures, and Euler characteristics;Quantum Topology;2023-09-01

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