We study inline image super-conformal field theories in four dimensions that correspond to mass-deformed linear quivers with n gauge groups and (bi-)fundamental matter. We describe them using Seiberg-Witten curves obtained from an M-theory construction and via the AGT correspondence. We take particular care in obtaining the detailed relation between the parameters appearing in these descriptions and the physical quantities of the quiver gauge theories. This precise map allows us to efficiently reconstruct the non-perturbative prepotential that encodes the effective IR properties of these theories. We give explicit expressions in the cases n = 1, 2, also in the presence of an Ω-background in the Nekrasov-Shatashvili limit. All our results are successfully checked against those of the direct microscopic evaluation of the prepotential à la Nekrasov using localization methods.

Non-perturbative studies of N=2 conformal quiver gauge theories

ASHOK, Sujay Krishnan;BILLO', Marco;DELL'AQUILA, Eleonora Fulvia Laura;FRAU, Marialuisa;LERDA, Alberto
2015-01-01

Abstract

We study inline image super-conformal field theories in four dimensions that correspond to mass-deformed linear quivers with n gauge groups and (bi-)fundamental matter. We describe them using Seiberg-Witten curves obtained from an M-theory construction and via the AGT correspondence. We take particular care in obtaining the detailed relation between the parameters appearing in these descriptions and the physical quantities of the quiver gauge theories. This precise map allows us to efficiently reconstruct the non-perturbative prepotential that encodes the effective IR properties of these theories. We give explicit expressions in the cases n = 1, 2, also in the presence of an Ω-background in the Nekrasov-Shatashvili limit. All our results are successfully checked against those of the direct microscopic evaluation of the prepotential à la Nekrasov using localization methods.
2015
63
5
259
293
http://www3.interscience.wiley.com/journal/117933213/issueyeargroup?year=2010
High Energy Physics - Theory; High Energy Physics - Theory; Physics and Astronomy (all)
Ashok, S.K; Billó, M.; Dell'Aquila, E.; Frau, M.; John, R.R.; Lerda, A.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1603341
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