arXiv:0910.2435·v2·High Energy Physics — Phenomenology
Minimal Supersymmetric Inverse Seesaw: Neutrino masses, lepton flavour violation and LHC phenomenology
M. Hirsch🇪🇸 · T. Kernreiter🇵🇹 · J. C. Romao🇵🇹 · Albert Villanova del Moral🇵🇹
Abstract
We study neutrino masses in the framework of the supersymmetric inverse seesaw model. Different from the non-supersymmetric version a minimal realization with just one pair of singlets is sufficient to explain all neutrino data. We compute the neutrino mass matrix up to 1-loop order and show how neutrino data can be described in terms of the model parameters. We then calculate rates for lepton flavour violating (LFV) processes, such as , and chargino decays to singlet scalar neutrinos. The latter decays are potentially observable at the LHC and show a characteristic decay pattern dictated by the same parameters which generate the observed large neutrino angles.
Comments: 26 pages, 4 figures; added explanatory comments, final version for publication