English

Predictions of the Top mass in Mininal Supersymmetric Left-Right Model

High Energy Physics - Phenomenology 2010-01-06 v2

Abstract

The one-loop evolution of Yukawa couplings in the minimal supersymmetric left-right model (MSUSYLR) model with a wide variation of the right handed breaking scale MRM_R from 1 TeV to 101810^{18} GeV is studied assuming that all third generation Yukawa couplings are equal and in the fixed point domain of the top quark Yuakwa coupling (hth_t) at the Plank scale. We show that: (1) The top quark Yukawa coupling hth_t displays a fixed point behaviour that is similar to that of the minimal supersymmetric standard model (MSSM). (2) The MSUSYLR model predicts a value of the top mass in the interval 177 to 184 GeV for αs\alpha_s in the interval 0.11 to 0.12. (3) A large value of tanβtan\beta is required to reproduce the correct mass of the bottom quark and tau lepton. (4) With the experimental value of the ratio mb(mb)mτ(mτ){m_b(m_b) \over m_\tau(m_\tau)} as an input the range of the right handed symmetry breaking scale MRM_R can be predicted. (5) The numerical value of the Majorana Yukawa coupling hMh_M can be calculated which is otherwise a completely free parameter.

Cite

@article{arxiv.hep-ph/9411357,
  title  = {Predictions of the Top mass in Mininal Supersymmetric Left-Right Model},
  author = {Biswajoy Brahmachari},
  journal= {arXiv preprint arXiv:hep-ph/9411357},
  year   = {2010}
}

Comments

Revised including new analysis of mb/mtau. This version is to appear