arXiv:hep-ph/9208260·v1·High Energy Physics — Phenomenology
Bounds on mini-charged neutrinos in the minimal standard model
K. S. Babu🇺🇸 · R. R. Volkas🇦🇺
Abstract
In the minimal Standard Model (MSM) with three generations of quarks and leptons, neutrinos can have tiny charges consistent with electromagnetic gauge invariance. There are three types of non-standard electric charge, given by , where , is standard electric charge, is a family-lepton--number, and is an arbitrary parameter which is put equal to zero in the usual incarnation of the MSM. These three non-standard electric charges are of considerable theoretical interest because they are compatible with the MSM Lagrangian and gauge anomaly cancellation. The two most conspicuous implications of such non-standard electric charges are the presence of two generations of massless charged neutrinos and a breakdown in electromagnetic universality for , and . We use results from (i) charge conservation in -decay, (ii) physical consequences of charged atoms in various contexts, (iii) the anomalous magnetic moments of charged leptons, (iv) neutrino-electron scattering, (v) energy loss in red giant and white dwarf stars, and (vi) limits on a cosmologically induced thermal photon mass, to place bounds on . While the constraints derived for 10^{-21}L_{\mu}-L_{\tau}\epsilon10^{-14}$.
Comments: 13 pages, LaTeX, UM-P-92/27