English

Affleck-Dine leptogenesis with triplet Higgs

High Energy Physics - Phenomenology 2014-11-17 v3

Abstract

We study an extension of the supersymmetric standard model including a pair of electroweak triplet Higgs Δ\Delta and Δˉ{\bar \Delta}. The neutrinos acquire Majorana masses mediated by these triplet Higgs fields rather than the right-handed neutrinos. The successful leptogenesis for baryogenesis can be realized after the inflation through the Affleck-Dine mechanism on a flat manifold consisting of Δ\Delta, Δˉ{\bar \Delta}, e~c{\tilde e}^c (anti-slepton), even if the triplet Higgs mass MΔM_\Delta is much larger than the gravitino mass m3/2103GeVm_{3/2} \sim 10^3 {\rm GeV}. Specifically, due to the effects of the potential terms provided with the superpotential terms MΔΔˉΔM_\Delta {\bar \Delta} \Delta, (λL//2M)ΔˉΔˉecec(\lambda_{L /} / 2M) {\bar \Delta} {\bar \Delta} e^c e^c, (λΔ/2M)ΔˉΔΔˉΔ(\lambda_\Delta / 2M) {\bar \Delta} \Delta {\bar \Delta} \Delta (λL//λΔ0.33\lambda_{L /} / \lambda_\Delta \sim 0.3 - 3), the phases of Δ\Delta, Δˉ{\bar \Delta}, e~c{\tilde e}^c are rotated at the time with the Hubble parameter HMΔH \sim M_\Delta, producing generally the asymmetry with fraction ϵL0.1\epsilon_L \sim 0.1. If MΔM_\Delta is large enough, this early leptogenesis can be completed before the thermal effects take place.

Keywords

Cite

@article{arxiv.hep-ph/0105054,
  title  = {Affleck-Dine leptogenesis with triplet Higgs},
  author = {Masato Senami and Katsuji Yamamoto},
  journal= {arXiv preprint arXiv:hep-ph/0105054},
  year   = {2014}
}

Comments

11 pages, 2 figures