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Alternative Perspective on Gauged Lepton Number and Implications for Collider Physics

Published 24 Aug 2018 in hep-ph | (1808.08188v2)

Abstract: A new anomaly-free gauged $U(1)\ell$ lepton-number model is studied. Two standard model lepton generations acquire the same but oppositive sign $U(1)\ell$ charges, while four exotic chiral leptons cancel the anomalies of the remaining lepton family. We discuss a simplified case which has the universal Yukawa couplings. It agrees with all the experimental constraints and predicts $m_e, m_\mu \ll m_\tau$, and the latter is of the electroweak scale. Due to the interference between the SM and $U(1)_\ell$ gauge interactions, this model robustly predicts that $e,\mu,\tau$ have distinctive forward-backward asymmetries at the $e+e-$ colliders. It can be searched for at the $e+e-$ machine with $\sim$ TeV center-of-mass energy and an integrated luminosity $\sim ab{-1}$.

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