English

Extended GWS Model Using Left-Right Symmetry and Its Prediction on Neutrino Mass

High Energy Physics - Phenomenology 2008-12-29 v3

Abstract

We evaluate the predictions of the left-right symmetry model based on SU(2)U(1)SU(2)\otimes U(1) gauge group with one bidoublet and one doublet Higgs fields on the parity violation, charged leptons and neutrinos masses. Parity violation in the weak interaction is due to the very large MWRM_{W_{R}} mass compare to the MWLM_{W_{L}} mass. The charged leptons acquire a Dirac mass via ordinary Higgs mechanism, meanwhile the neutrinos acquire a very small Dirac masses via seesaw-like mechanism with values m1=0.000043m_{1}=0.000043 eV, m2=0.008888m_{2}=0.008888 eV, m3=0.014948m_{3}=0.014948 eV when ρ=8.4×1011\rho=8.4\times 10^{-11}, or m_{1}=0.000014eV, eV, m_{2}=0.003032eV, eV, m_{3}=0.050990eVwhen eV when \rho=2.9\times 10^{-11}$.

Keywords

Cite

@article{arxiv.0811.2852,
  title  = {Extended GWS Model Using Left-Right Symmetry and Its Prediction on Neutrino Mass},
  author = {Asan Damanik and Mirza Satriawan and Arief Hermanto and Pramudita Anggraita},
  journal= {arXiv preprint arXiv:0811.2852},
  year   = {2008}
}

Comments

10 pages, 1 figure, typos corrected, and abstract corrected