English

Experimental and Theoretical Implications of New Sequential Leptons

High Energy Physics - Phenomenology 2009-10-22 v1

Abstract

If new sequential leptons E±E^\pm and N0N^0 exist, the LEP bound implies mEm_E, mN>MZ/2m_N > M_Z/2. The heaviness of the neutral lepton breaks away from the pattern of the first three generations. The minimal model is to have 4 left-handed lepton doublets and 4 right-handed charged lepton singlets, but only one right-handed neutral lepton singlet. Since in general the 3rd and 4th generation should mix, and since mNmE\vert m_N - m_E\vert should not be too large, neither EE nor NN would be stable, and both tend to decay via the Cabibbo suppressed EντE\to \nu_\tau or NτN\to \tau charged currents. This leads to the interesting signature of like-sign WW pair production via E+NνˉττW+W+E^+N \to \bar\nu_\tau\tau^- W^+W^+ at the SSC and LHC. The popular seesaw mechanism cannot plausibly accommodate the near masslessness of the light neutrinos and the heaviness of N0N^0 simultaneously. The representation structure poses a difficulty to the traditional approach of SO(10)SO(10)-based grand unified theories. The discovery of such new heavy leptons would thus have rather wide ranging and far reaching implications.

Keywords

Cite

@article{arxiv.hep-ph/9308312,
  title  = {Experimental and Theoretical Implications of New Sequential Leptons},
  author = {Wei-Shu Hou and Gwo-Guang Wong},
  journal= {arXiv preprint arXiv:hep-ph/9308312},
  year   = {2009}
}

Comments

23 pages (RevTex), 2 figures (not included), NTUTH-93-10

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