Matrix models for 5d super Yang-Mills
arXiv:1608.02967 · doi:10.1088/1751-8121/aa5cbe
Abstract
In this contribution to the review on localization in gauge theories we investigate the matrix models derived from localizing N=1 super Yang-Mills on S^5. We consider the large-N limit and attempt to solve the matrix model by a saddle-point approximation. In general it is not possible to find an analytic solution, but at the weak and the strong limits of the 't Hooft coupling there are dramatic simplifications that allows us to extract most of the interesting information. At weak coupling we show that the matrix model is close to the Gaussian matrix model and that the free-energy scales as N^2. At strong coupling we show that if the theory contains one adjoint hypermultiplet then the free-energy scales as N^3. We also find the expectation value of a supersymmetric Wilson loop that wraps the equator. We demonstrate how to extract the effective couplings and reproduce results of Seiberg. Finally, we compare to results for the six-dimensional (2,0) theory derived using the AdS/CFT correspondence. We show that by choosing the hypermultiplet mass such that the supersymmetry is enhanced to N=2, the Wilson loop result matches the analogous calculation using AdS/CFT. The free-energies differ by a rational fraction.
This is a contribution to the review volume `Localization techniques in quantum field theories' (eds. V. Pestun and M. Zabzine) which contains 17 Chapters. The complete volume is summarized in arXiv:1608.02952 and it can be downloaded at https://arxiv.org/src/1608.02952/anc/LocQFT.pdf or http://pestun.ihes.fr/pages/LocalizationReview/LocQFT.pdf
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Cited by in corpus (8)
- Localization techniques in quantum field theories
- Electrostatic Description of Five-dimensional SCFTs
- Holomorphic blocks and the 5d AGT correspondence
- Review of localization for 5d supersymmetric gauge theories
- A one-dimensional theory for Higgs branch operators
- Phases of five-dimensional supersymmetric gauge theories
- Matrix models from localization of five-dimensional supersymmetric noncommutative U(1) gauge theory
- Large limits of supersymmetric quantum field theories: A pedagogical overview