1 research outputs found

    Radiatively Induced Neutrino Masses and Oscillations in an SU(3)_LxU(1)_N Gauge Model

    Get PDF
    We have constructed an SU(3)L×U(1)NSU(3)_L \times U(1)_N gauge model utilizing an U(1)L′U(1)_{L^\prime} symmetry, where L′L^\prime = Le−Lμ−LτL_e-L_\mu-L_\tau, which accommodates tiny neutrino masses generated by L′L^\prime-conserving one-loop and L′L^\prime-breaking two-loop radiative mechanisms. The generic smallness of two-loop radiative effects compared with one-loop radiative effects describes the observed hierarchy of Δmatm2\Delta m_{atm}^2 ≫\gg Δm⊙2\Delta m_\odot^2. A key ingredient for radiative mechanisms is a charged scalar (h+h^+) that couples to charged lepton-neutrino pairs and h+h^+ together with the standard Higgs scalar (ϕ\phi) can be unified into a Higgs triplet as (ϕ0\phi^0, ϕ−\phi^-, h+h^+)T^T. This assignment in turn requires lepton triplets (ψLi\psi_L^i) with heavy charged leptons (κL+i\kappa_L^{+i}) as the third member: ψLi=(νLi,ℓLi,κL+i)T\psi_L^i=(\nu^i_L,\ell^i_L,\kappa^{+i}_L)^T, where ii (=1,2,3=1,2,3) denotes three families. It is found that our model is relevant to yield quasi-vacuum oscillations for solar neutrinos.Comment: 11 pages, revtex, including 2 figures, accepted for publication in Phys. Rev. D with minor modification of our resul
    corecore