arXiv · 0711.2511
Dynamics of Non-renormalizable Electroweak Symmetry Breaking
Abstract
We compute the complete one-loop finite temperature effective potential for electroweak symmetry breaking in the Standard Model with a Higgs potential supplemented by higher dimensional operators as generated for instance in composite Higgs and Little Higgs models. We detail the resolution of several issues that arise, such as the cancellation of infrared divergences at higher order and imaginary contributions to the potential. We follow the dynamics of the phase transition, including the nucleation of bubbles and the effects of supercooling. We characterize the region of parameter space consistent with a strong first-order phase transition which may be relevant to electroweak baryogenesis. Finally, we investigate the prospects of present and future gravity wave detectors to see the effects of a strong first-order electroweak phase transition.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
C. Delaunay, C. Grojean, J. D. Wells. 2008-01-18. Dynamics of Non-renormalizable Electroweak Symmetry Breaking. https://doi.org/10.1088/1126-6708%2F2008%2F04%2F029
Cite the original work for its findings. Save a collection to share your selection of sources.