Supersymmetry for Fermion Masses
arXiv:hep-ph/0507298 · doi:10.1088/0253-6102/47/6/025
Abstract
It is proposed that supersymmetry (SUSY) maybe used to understand fermion mass hierarchies. A family symmetry Z_{3L} is introduced, which is the cyclic symmetry among the three generation SU(2) doublets. SUSY breaks at a high energy scale ~ 10^{11} GeV. The electroweak energy scale ~ 100 GeV is unnaturally small. No additional global symmetry, like the R-parity, is imposed. The Yukawa couplings and R-parity violating couplings all take their natural values which are about (10^0-10^{-2}). Under the family symmetry, only the third generation charged fermions get their masses. This family symmetry is broken in the soft SUSY breaking terms which result in a hierarchical pattern of the fermion masses. It turns out that for the charged leptons, the tau mass is from the Higgs vacuum expectation value (VEV) and the sneutrino VEVs, the muon mass is due to the sneutrino VEVs, and the electron gains its mass due to both Z_{3L} and SUSY breaking. The large neutrino mixing are produced with neutralinos playing the partial role of right-handed neutrinos. |V_{e3}| which is for nu_e-nu_{tau} mixing is expected to be about 0.1. For the quarks, the third generation masses are from the Higgs VEVs, the second generation masses are from quantum corrections, and the down quark mass due to the sneutrino VEVs. It explains m_c/m_s, m_s/m_e, m_d > m_u and so on. Other aspects of the model are discussed.
25 pages, 3 figures, revtex4; neutrino oscillation and many discussions added, smallness of the electron mass due to supersymmetry pointed out; v3: numerical errors corrected
References in corpus (33)
- Big Bang Nucleosynthesis (in "The Review of Particle Properties" 2004)
- Aspects of Split Supersymmetry
- PeV-Scale Supersymmetry
- Phenomenological constraints on broken R parity symmetry in supersymmetry models
- Implications of neutrino data circa 2005
- Signatures of long-lived gluinos in split supersymmetry
- Dark Matter in the Finely Tuned Minimal Supersymmetric Standard Model
- Split Supersymmetry at Colliders
- Neutralino Dark Matter Detection in Split Supersymmetry Scenarios
- Scales of Fermion Mass Generation and Electroweak Symmetry Breaking
- Split Supersymmetry, stable gluino, and gluinonium
- One Loop Predictions of the Finely Tuned SSM
- Hierarchically Split Supersymmetry with Fayet-Iliopoulos D-terms in String Theory
- The Higgs Boson Mass in Split Supersymmetry at Two-Loops
- Probing Split Supersymmetry with Cosmic Rays
- Chargino Pair Production at Linear Collider and Split Supersymmetry
- Axion Models with High-Scale Supersymmetry Breaking
- Radiative seesaw: a case for split supersymmetry
- Sparticle spectrum and phenomenology in split supersymmetry: some possibilities
- R-parity violation in split supersymmetry
- Gravitino production from reheating in split supersymmetry
- Can we distinguish between h^{SM} and h^0 in split supersymmetry?
- Neutrino Mass from R-parity Violation in Split Supersymmetry
- Transition magnetic moments of Majorana neutrinos in supersymmetry without R-parity in light of neutrino oscillations
- Gauge Coupling Unification in the Standard Model
- A Supersymmetry Model of Leptons
- How heavy can the Fermions in Split Susy be? A study on Gravitino and Extradimensional LSP
- Indirect Signals from Dark Matter in Split Supersymmetry
- Lightest Higgs Boson Mass in Split Supersymmetry with See-saw Mechanism
- How large could the R-parity violating couplings be?
- Dilepton decays and oscillation of in split supersymmetry with R-parity violation
- Minimal Grand Unification Model in an Anthropic Landscape
- Vacuum Stability in Split Susy and Little Higgs Models
Cited by in corpus (11)
- and the Higgs mass from high scale supersymmetry
- Anomalous Muon Magnetic Moment in the Inverse Seesaw Extended Next-to-Minimal Supersymmetric Standard Model
- Fermion Hierarchy from Sfermion Anarchy
- Split SUSY Radiates Flavor
- Hunting long-lived gluinos at the Pierre Auger Observatory
- Charge Quantization and Neutrino Mass from Planck-scale SUSY
- Lepton Mixing, Residual Symmetries, and Trigonometric Diophantine Equations
- Flavor structure from `canonical' Yukawa interactions and `emergent' kinetic terms
- Neutrino phenomenology of a high scale supersymmetry model
- Left-Right Supersymmetry as the Origin of Flavor Physics
- Type 1 2HDM as effective theory of supersymmetry