Gauge Symmetry Breaking in Flux Compactification with Wilson-line Scalar Condensate
arXiv:2205.09320 · doi:10.1103/PhysRevD.106.035035
Abstract
We discuss the gauge symmetry breaking of six dimensional theories in flux compactification with a magnetic flux background and a constant vacuum expectation value (VEV) for the scalar fields, which are zero modes of extra spatial components of the gauge field. Although the effective potential for the scalar fields are known not to be generated classically and radiatively in a magnetic flux background only, the one-loop effective potential is shown to be generated by the effects of the non-zero constant VEV. As illustrations, we calculate the one-loop effective potential in SU(2) and SU(3) Yang-Mills theories. In both cases, we find that the potential minimum is located at non-zero VEV and the gauge symmetry breaking takes place.
34 pages, 5 figures, published version in PRD
References in corpus (7)
- Four-dimensional String Compactifications with D-Branes, Orientifolds and Fluxes
- Three generation magnetized orbifold models
- Two loop finiteness of Higgs mass and potential in the gauge-Higgs unification
- Higher Order Couplings in Magnetized Brane Models
- Six Dimensional Gauge-Higgs Unification with an Extra Space S^2 and the Hierarchy Problem
- Massive modes in magnetized brane models
- Nonvanishing Finite Scalar Mass in Flux Compactification