Radiative Breaking of the Minimal Supersymmetric Left-Right Model
arXiv:1602.00637 · doi:10.1016/j.physletb.2016.02.066
Abstract
We study a variation to the SUSY Left-Right symmetric model based on the gauge group . Beyond the quark and lepton superfields we only introduce a second Higgs bidoublet to produce realistic fermion mass matrices. This model does not include any triplets. We calculate renormalization group evolutions of soft SUSY parameters at the one-loop level down to low energy. We find that an slepton doublet acquires a negative mass squared at low energies, so that the breaking of is realized by a non-zero vacuum expectation value of a right-handed sneutrino. Small neutrino masses are produced through neutrino mixings with gauginos. Mass limits on the sector are obtained by direct search results at the LHC as well as lepton-gaugino mixing bounds from the LEP precision data.
12 pages, 1 figure
References in corpus (5)
- Search for heavy neutrinos and W bosons with right-handed couplings in proton-proton collisions at sqrt(s) = 8 TeV
- Spontaneous R-Parity Breaking and Left-Right Symmetry
- Naturally Light Sterile Neutrinos from Theory of R-parity
- Three Layers of Neutrinos
- Low scale gravity mediation with warped extra dimension and collider phenomenology on the hidden sector