N=2* Super-Yang-Mills Theory at Strong Coupling
arXiv:1408.6040 · doi:10.1007/JHEP11(2014)057
Abstract
The planar N=2* Super-Yang-Mills (SYM) theory is solved at large 't Hooft coupling using localization on S(4). The solution permits detailed investigation of the resonance phenomena responsible for quantum phase transitions in infinite volume, and leads to quantitative predictions for the semiclassical string dual of the N=2* theory.
34 pages, 9 figures; v2: the name of one author changed
References in corpus (5)
- A Study of U(N) Lattice Gauge Theory in 2-dimensions
- Modular anomaly equations in N=2* theories and their large-N limit
- Quantum Phase Transitions in Mass-Deformed ABJM Matrix Model
- Supersymmetric Chern-Simons-matter theory and phase transitions
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- Wilson loops in circular quiver SCFTs at strong coupling
- N = 2* Phase Transitions and Holography
- Resurgent Analysis of Localizable Observables in Supersymmetric Gauge Theories
- Large from Seiberg-Witten Curve and Localization
- Phase structure of SYM on ellipsoids
- Higher Rank Wilson Loops in N = 2* Super-Yang-Mills Theory
- Phase transitions in 5D super Yang-Mills theory
- Holographic mesons in global Pilch-Warner background geometry