English

Planck-scale induced left-right gauge theory at LHC and experimental tests

High Energy Physics - Phenomenology 2016-03-14 v4

Abstract

Recent measurements at LHC has inspired searches for TeV scale left-right gauge theory originating from grand unified theories. We show that inclusion of Planck-scale induced effects due to dim.5{\rm dim.}5 operator not only does away with all the additional intermediate symmetries, but also it predicts the minimal set of light Higgs scalars tailored after neutrino masses and dilepton, or trilepton signals. The heavy-light neutrino mixings are predicted from charged fermion mass fits in SO(10)SO(10) and LFV constraints which lead to new predictions for dilepton or trilepton production signals. Including fine-structure constant matching and two-loop, and threshold effects predicts MWR=g2R×104.3±1.5±0.2M_{W_R}= g_{2R}\times 10^{4.3\pm 1.5 \pm 0.2} GeV and proton lifetime τp=1036.15±5.8±0.2\tau_p=10^{36.15\pm 5.8\pm 0.2} yrs with WRW_R gauge boson coupling g2R=0.560.57g_{2R}=0.56-0.57. Predictions on lepton flavour and lepton number violations are accessible to ongoing experiments. Current CMS data on di-electron excess at s=8\sqrt s= 8 TeV are found to be consistent with WRW_R gauge boson mass MWR1.92.2M_{W_R}\ge 1.9-2.2 TeV which also agrees with the values obtained from dijet resonance production data. We also discuss plausible explanations for diboson production excesses observed at LHC and make predictions expected at s=14\sqrt s =14 TeV

Keywords

Cite

@article{arxiv.1411.6748,
  title  = {Planck-scale induced left-right gauge theory at LHC and experimental tests},
  author = {M. K. Parida and Biswonath Sahoo},
  journal= {arXiv preprint arXiv:1411.6748},
  year   = {2016}
}

Comments

47 pages, PdfLaTeX, 14 figures. References added, Typo corrected; Accepted in Nuclear Physics B