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Gravitational waves from phase transitions and cosmic strings in neutrino mass models with multiple majorons

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arxiv 2306.04680 v2 pith:52UBSVNP submitted 2023-06-07 hep-ph astro-ph.COhep-th

classification hep-phastro-ph.COhep-th
keywords cosmicgravitationalmodelmultiplephasestringsbackgroundfirst
verification ladder T0 review T1 audit T2 compute T3 formal
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We explore the origin of Majorana masses within the majoron model and how this can lead to the generation of a distinguishable primordial stochastic background of gravitational waves. We first show how in the simplest majoron model only a contribution from cosmic string can be within the reach of planned experiments. We then consider extensions containing multiple complex scalars, demonstrating how in this case a spectrum comprising contributions from both a strong first order phase transition and cosmic strings can naturally emerge. We show that the interplay between multiple scalar fields can amplify the phase transition signal, potentially leading to double peaks over the wideband sloped spectrum from cosmic strings. We also underscore the possibility of observing such a gravitational wave background to provide insights into the reheating temperature of the universe. We conclude highlighting how the model can be naturally combined with scenarios addressing the origin of matter of the universe, where baryogenesis occurs via leptogenesis and a right-handed neutrino plays the role of dark matter.

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  1. Minimal Multi-Majoron Model

    hep-ph 2025-07 conditional novelty 6.0 of 10

    The minimal multi-Majoron model is a UV-complete seesaw framework in which two Majoron VEVs set hierarchical right-handed neutrino masses and generate a combined cosmic-string and first-order-transition gravitational ...

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