arXiv · 1404.3631
Non-Abelian dynamics in the resonant decay of the Higgs after inflation
Abstract
We study the resonant decay of the Higgs condensate into weak gauge bosons after inflation and estimate the corrections arising from the non-Abelian self-interactions of the gauge fields. We find that non-Abelian interaction terms induce an effective mass which tends to shut down the resonance. For the broad resonance relevant for the Standard Model Higgs the produced gauge particles backreact on the dynamics of the Higgs condensate before the non-Abelian terms grow large. The non-Abelian terms can however significantly affect the final stages of the resonance after the backreaction. In the narrow resonance regime, which may be important for extensions of the Standard Model, the non-Abelian terms affect already the linear stage and terminate the resonance before the Higgs condensate is affected by the backreaction of decay products.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Kari Enqvist, Sami Nurmi, Stanislav Rusak. 2014-11-03. Non-Abelian dynamics in the resonant decay of the Higgs after inflation. https://doi.org/10.1088/1475-7516%2F2014%2F10%2F064
Cite the original work for its findings. Save a collection to share your selection of sources.