Light Sterile Neutrino and Low Scale Left-Right Symmetry in D-brane inspired
arXiv:1811.12647 · doi:10.1103/PhysRevD.99.035032
Abstract
Motivated by the ongoing searches for new physics at the LHC, we explore the low energy consequences of a D-brane inspired (4-2-2) model. The Higgs sector consists of an adjoint, a pair in , and a bidoublet field in . With the adjoint the symmetry breaks to a left-right symmetric model. A missing partner mechanism protects the Higgs doublets in , which subsequently break the symmetry to the Standard Model at a few TeV scale. An inverse seesaw mechanism generates masses for the observed neutrinos and also yields a sterile neutrino which can play the rôle of dark matter if its mass lies in the keV range. Other phenomenological implications including proton decay are briefly discussed.
12 pages, 1 figure
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