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Dirac leptogenesis from asymmetry wash-in via scatterings

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arxiv 2404.16934 v2 pith:CR64PVNS submitted 2024-04-25 hep-ph astro-ph.CO

Dirac leptogenesis from asymmetry wash-in via scatterings

classification hep-ph astro-ph.CO
keywords asymmetrydiracleptogenesismodelneutrinosconditionsdegreesearly
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Leptogenesis typically requires the introduction of heavy particles whose out-of-equilibrium decays are essential for generating a matter-antimatter asymmetry, according to one of Sakharov's conditions. We demonstrate that in Dirac leptogenesis, scatterings between the light degrees of freedom -- Standard Model particles plus Dirac neutrinos - are sufficient to generate the asymmetry. The generation requires at least two effective charges conserved by the fast Standard Model interactions. Due to its vanishing source term in the Boltzmann equations, the asymmetry of right-handed neutrinos solely arises through wash-in processes. Sakharov's conditions are satisfied because the right-handed neutrino partners are out of equilibrium. Consequently, heavy degrees of freedom never needed to be produced in the early universe, allowing for a reheating temperature well below their mass scale. Considering a minimal leptoquark model, we discuss the viable parameter space along with the potential observational signature of an increased number of effective neutrinos in the early universe.

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  1. Primordial Dirac Leptogenesis

    hep-ph 2025-11 conditional novelty 7.0

    Baryogenesis can proceed via CP-violating inflaton decays that imprint an asymmetry in an inert Higgs doublet, which decays into Dirac neutrinos and is converted by sphalerons to the observed baryon asymmetry.