Meta-Stable Brane Configuration and Gauged Flavor Symmetry
arXiv:hep-th/0703015 · doi:10.1142/S0217732307024346
Abstract
Starting from an N=1 supersymmetric electric gauge theory with the gauge group Sp(N_c) x SO(2N_c') with fundamentals for the first gauge group factor and a bifundamental, we apply Seiberg dual to the symplectic gauge group only and arrive at the N=1 supersymmetric dual magnetic gauge theory with dual matters including the gauge singlets and superpotential. By analyzing the F-term equations of the dual magnetic superpotential, we describe the intersecting brane configuration of type IIA string theory corresponding to the meta-stable nonsupersymmetric vacua of this gauge theory.
16 pp, 3 figures; stability analysis in page 7 and 8 added and the presentation improved; reduced bytes of figures and to appear in MPLA
References in corpus (5)
- Meta-Stable Supersymmetry Breaking Vacua on Intersecting Branes
- Landscape of Supersymmetry Breaking Vacua in Geometrically Realized Gauge Theories
- Brane Configurations for Nonsupersymmetric Meta-Stable Vacua in SQCD with Adjoint Matter
- M-theory Lift of Meta-Stable Brane Configuration in Symplectic and Orthogonal Gauge Groups
- Gauging Flavour in Meta-Stable Susy Breaking Models
Cited by in corpus (8)
- Geometrically Induced Phase Transitions at Large N
- Supersymmetry Breaking Vacua from M Theory Fivebranes
- Other Meta-Stable Brane Configuration by Adding an Orientifold 6-Plane to Giveon-Kutasov
- More on Meta-Stable Brane Configuration by Quartic Superpotential for Fundamentals
- Meta-Stable Brane Configurations, Multiple NS5-Branes, and Rotated D6-Branes
- Meta-Stable Brane Configurations with Multiple NS5-Branes
- Meta-Stable Brane Configurations of Multiple Product Gauge Groups with Orientifold 6 Plane
- Meta-Stable Brane Configurations of Triple Product Gauge Groups