Non-Abelian Supercurrents and de Sitter Ground State in Electroweak Theory
arXiv:0804.1544 · doi:10.1088/1126-6708/2008/12/014
Abstract
We show that gauge symmetry breaking in the Weinberg-Salam model can be implemented by a mere change of variables and without any explicit gauge fixing. The change of variables entails the concept of supercurrent which has been widely employed in the study of superconductivity. It also introduces a separation between the isospin and the hypercharge, suggesting that our new variables describe a strongly coupled regime of the electroweak theory. We discuss the description of various embedded topological defects in terms of these variables. We also propose that in terms of our variables the Weinberg-Salam model can be interpreted in terms of a gravity theory with the modulus of Higgs field as dilaton and the de Sitter space as the ground state.
13 pages, no figures, JHEP style, published version
Cited by in corpus (8)
- Symmetry breaking, conformal geometry and gauge invariance
- Tractors and Twistors from conformal Cartan geometry: a gauge theoretic approach II. Twistors
- Tractors and Twistors from conformal Cartan geometry: a gauge theoretic approach I. Tractors
- On spinors, strings, integrable models and decomposed Yang-Mills theory
- Gauge field, strings, solitons, anomalies and the speed of life
- Scheme dependence of asymptotically free solutions
- Electroweak Theory without a Higgs potential: Radiative Effects
- Baryon number violation and a new electroweak interaction