arXiv · hep-th/0104124
Phases of supersymmetric gauge theories from M-theory on G_2 manifolds
Abstract
We consider M-theory on compact spaces of G_2 holonomy constructed as orbifolds of the form (CY x S^1)/Z_2 with fixed point set Σon the CY. This describes N=1 SU(2) gauge theories with b_1(Σ) chiral multiplets in the adjoint. For b_1=0, it generalizes to compact manifolds the study of the phase transition from the non-Abelian to the confining phase through geometrical S^3 flops. For b_1=1, the non-Abelian and Coulomb phases are realized, where the latter arises by desingularization of the fixed point set, while an S^2 x S^1 flop occurs. In addition, an extremal transition between G_2 spaces can take place at conifold points of the CY moduli space where unoriented membranes wrapped on CP^1 and RP^2 become massless.
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P. Kaste, A. Kehagias, H. Partouche. 2001-06-19. Phases of supersymmetric gauge theories from M-theory on G_2 manifolds. https://doi.org/10.1088/1126-6708%2F2001%2F05%2F058
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