English

Gravitational F-terms through anomaly equations and deformed chiral rings

High Energy Physics - Theory 2016-09-06 v1

Abstract

We study effective gravitational F-terms, obtained by integrating an U(N)U(N) adjoint chiral superfield Φ\Phi coupled to the N=1{\cal N}=1 gauge chiral superfield WαW_\alpha and supergravity, to arbitrary orders in the gravitational background. The latter includes in addition to the N=1{\cal N}=1 Weyl superfield GαβγG_{\alpha\beta\gamma}, the self-dual graviphoton field strength FαβF_{\alpha\beta} of the parent, broken N=2{\cal N}=2 theory. We first study the chiral ring relations resulting from the above non-standard gravitational background and find agreement, for gauge invariant operators, with those obtained from the dual closed string side via Bianchi identities for N=2{\cal N}=2 supergravity coupled to vector multiplets. We then derive generalized anomaly equations for connected correlators on the gauge theory side, which allow us to solve for the basic one-point function TrW2/(zΦ)\langle {\rm Tr} W^2/(z-\Phi)\rangle to all orders in F2F^2. By generalizing the matrix model loop equation to the generating functional of connected correlators of resolvents, we prove that the gauge theory result coincides with the genus expansion of the associated matrix model, after identifying the expansion parameters on the two sides.

Keywords

Cite

@article{arxiv.hep-th/0305217,
  title  = {Gravitational F-terms through anomaly equations and deformed chiral rings},
  author = {Luis F. Alday and Michele Cirafici and Justin R. David and Edi Gava and K. S. Narain},
  journal= {arXiv preprint arXiv:hep-th/0305217},
  year   = {2016}
}

Comments

36 pages, Uses JHEP.cls