Phase transition and gravitational waves in maximally symmetric composite Higgs model
Avik Banerjee, Marco Merchand, Ignacy Na{\l}\k{e}cz

TL;DR
This paper investigates phase transitions in a maximally symmetric composite Higgs model with a pseudoscalar singlet, exploring gravitational wave signals as a novel probe of the model's strong dynamics and CP violation effects.
Contribution
It introduces a detailed analysis of phase transitions and gravitational wave production in a composite Higgs framework with a next-to-minimal coset and explicit CP violation.
Findings
Strong first-order phase transition induced by CP violation.
Potential gravitational wave signals detectable by future experiments.
Suppressed influence of strong sector resonances on finite temperature potential.
Abstract
In this paper we study phase transitions in a maximally symmetric composite Higgs model with next-to-minimal coset, where a pseudoscalar singlet emerges alongside the Higgs doublet. The maximal symmetry guarantees the finiteness of the radiatively generated scalar potential. We explore the scenario involving an explicit source of CP violation in the strong sector, which induces a asymmetric scalar potential, and consequently leads to nonzero vacuum expectation value for the singlet. Current experimental bounds from the LHC are imposed on the masses of the composite resonances, while the CP violating interactions of the pseudo Nambu-Goldstone bosons are tightly constrained from the measurements of the electric dipole moment of the electron. We compute the finite temperature corrections to the potential, incorporating the momentum-dependent form factors in the loop…
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Taxonomy
TopicsCosmology and Gravitation Theories · Black Holes and Theoretical Physics · Geophysics and Gravity Measurements
