English

Sneutrinos as Mixed Inflaton and Curvaton

High Energy Physics - Phenomenology 2018-06-13 v2

Abstract

We investigate a scenario where the supersymmetric partners of two right-handed neutrinos (sneutrinos) work as mixed inflaton and curvaton, motivated by the fact that the curvaton contribution to scalar perturbations can reduce the tensor-to-scalar ratio rr so that chaotic inflation models with a quadratic potential are made consistent with the experimental bound on rr. After confirming that the scenario evades the current bounds on rr and the scalar perturbation spectral index nsn_s, we make a prediction on the local non-Gaussianity in bispectrum, fNLf_{\rm NL}, and one in trispectrum, τNL\tau_{\rm NL}. Remarkably, since the sneutrino decay widths are determined by the neutrino Dirac Yukawa coupling, which can be estimated from the measured active neutrino mass differences in the seesaw model, our scenario has a strong predictive power about local non-Gaussianities, as they heavily depend on the inflaton and curvaton decay rates. Using this fact, we can constrain the sneutrino mass from the experimental bounds on nsn_s, rr and fNLf_{\rm NL}.

Keywords

Cite

@article{arxiv.1712.03684,
  title  = {Sneutrinos as Mixed Inflaton and Curvaton},
  author = {Naoyuki Haba and Tomo Takahashi and Toshifumi Yamada},
  journal= {arXiv preprint arXiv:1712.03684},
  year   = {2018}
}

Comments

24 pages, 4 figures. Model slightly changed to avoid MSSM flat direction VEVs affecting sneutrino decays. Added discussion on quantum corrections to the no-scale type K\"ahler potential. Numerical errors corrected. Version accepted for publication in JCAP