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arXiv:2401.13734·v3·High Energy Physics — Phenomenology

Dynamical Generation of the Baryon Asymmetry from a Scale Hierarchy

Jae Hyeok Chang🇺🇸 · Kwang Sik Jeong🇰🇷 · Chang Hyeon Lee🇰🇷 · Chang Sub Shin🇰🇷

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Abstract

We propose a novel baryogenesis scenario where the baryon asymmetry originates directly from a hierarchy between two fundamental mass scales: the electroweak scale and the Planck scale , in the form of \begin{equation} Y_B \sim \sqrt{\frac{v}{M_P}} \, . \nonumber \end{equation} This relation straightforwardly gives the observed baryon yield today , which can be a hint for underlying fundamental physics. We provide an example of baryogenesis models that yield this relation. Our model is based on the neutrino-portal Affleck-Dine mechanism, which generates the asymmetry of the Affleck-Dine sector during the radiation-dominated era and subsequently transfers it to the baryon number before the electroweak phase transition. The observed baryon asymmetry is then a natural outcome of this scenario. The model is testable as it predicts the existence of a Majoron with a keV mass and an electroweak scale decay constant. The impact of the relic Majoron on the effective number of neutrinos () can be measured through near-future cosmic microwave background observations.

Comments: 9 pages, 3 figures. v2:references added, discussion extended. v3: version accepted by PRD

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