2 research outputs found

    Why is TeV-scale a geometric mean of neutrino mass and GUT-scale?

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    Among three typical energy scales, a neutrino mass scale (mν∼m_\nu\sim 0.1 eV), a GUT scale (MGUT∼1016M_{GUT}\sim 10^{16} GeV), and a TeV-scale (MNP∼1M_{NP}\sim 1 TeV), there is a fascinating relation of MNP≃mν⋅MGUTM_{NP}\simeq \sqrt{m_\nu\cdot M_{GUT}}. The TeV-scale, MNPM_{NP}, is a new physics scale beyond the standard model which is regarded as supersymmetry in this letter. We suggest a simple supersymmetric neutrinophilic Higgs doublet model, which realizes the above relation dynamically as well as the suitable mνm_\nu through a tiny vacuum expectation value of neutrinophilic Higgs without additional scales other than MNPM_{NP} and MGUTM_{GUT}. A gauge coupling unification, which is an excellent feature in the supersymmetric standard model, is preserved automatically in this setup.Comment: 7 page

    Hunting for heavy majorana neutrinos with lepton number violating signatures at LHC

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