Updated Values of Running Quark and Lepton Masses
arXiv:0712.1419 · doi:10.1103/PhysRevD.77.113016
Abstract
Reliable values of quark and lepton masses are important for model building at a fundamental energy scale, such as the Fermi scale M_Z \approx 91.2 GeV and the would-be GUT scale Λ_GUT \sim 2 \times 10^16 GeV. Using the latest data given by the Particle Data Group, we update the running quark and charged-lepton masses at a number of interesting energy scales below and above M_Z. In particular, we take into account the possible new physics scale (μ\sim 1 TeV) to be explored by the LHC and the typical seesaw scales (μ\sim 10^9 GeV and μ\sim 10^12 GeV) which might be relevant to the generation of neutrino masses. For illustration, the running masses of three light Majorana neutrinos are also calculated. Our up-to-date table of running fermion masses are expected to be very useful for the study of flavor dynamics at various energy scales.
23 pages, 6 tables, 2 figures; version published in PRD
References in corpus (4)
Cited by in corpus (7)
- Fermion Mass Hierarchies and Flavor Mixing from Symmetry
- Quark and lepton masses at the GUT scale including SUSY threshold corrections
- Generation Symmetry and E_6 Unification
- Phenomenological Meaning of a Neutrino Mass Matrix Related to Up-Quark Masses
- Testing Realistic Quark Mass Matrices in the Custodial Randall-Sundrum Model with Flavor Changing Top Decays
- U(3)-Flavor Nonet Scalar as an Origin of the Flavor Mass Spectra
- Friedberg-Lee Symmetry for Quark Masses and Flavor Mixing