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Donaldson-Witten theory and indefinite theta functions

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AbstractWe consider partition functions with insertions of surface operators of topologically twisted$$ \mathcal{N}=2 $$N=2, SU(2) supersymmetric Yang-Mills theory, or Donaldson-Witten theory for short, on a four-manifold. If the metric of the compact four-manifold has positive scalar curvature, Moore and Witten have shown that the partition function is completely determined by the integral over the Coulomb branch parametera, while more generally the Coulomb branch integral captures the wall-crossing behavior of both Donaldson polynomials and Seiberg-Witten invariants. We show that after addition of a$$ \overline{\mathcal{Q}} $$Q¯-exact surface operator to the Moore-Witten integrand, the integrand can be written as a total derivative to the anti-holomorphic coordinateāusing Zwegers’ indefinite theta functions. In this way, we reproduce Göttsche’s expressions for Donaldson invariants of rational surfaces in terms of indefinite theta functions for any choice of metric.
Springer Science and Business Media LLC
Title: Donaldson-Witten theory and indefinite theta functions
Description:
AbstractWe consider partition functions with insertions of surface operators of topologically twisted$$ \mathcal{N}=2 $$N=2, SU(2) supersymmetric Yang-Mills theory, or Donaldson-Witten theory for short, on a four-manifold.
If the metric of the compact four-manifold has positive scalar curvature, Moore and Witten have shown that the partition function is completely determined by the integral over the Coulomb branch parametera, while more generally the Coulomb branch integral captures the wall-crossing behavior of both Donaldson polynomials and Seiberg-Witten invariants.
We show that after addition of a$$ \overline{\mathcal{Q}} $$Q¯-exact surface operator to the Moore-Witten integrand, the integrand can be written as a total derivative to the anti-holomorphic coordinateāusing Zwegers’ indefinite theta functions.
In this way, we reproduce Göttsche’s expressions for Donaldson invariants of rational surfaces in terms of indefinite theta functions for any choice of metric.

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