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New GUT predictions for quark and lepton mass ratios confronted with phenomenology
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New GUT predictions for quark and lepton mass ratios confronted with phenomenology

S. AntuschM. Spinrath
Physical Review D - Particles, Fields, Gravitation and Cosmology, 卷.79(9), 095004
05/2009

摘要

Nuclear and High Energy Physics Physics and Astronomy (miscellaneous)
Group theoretical factors from grand unified theory (GUT) symmetry breaking can lead to predictions for the ratios of quark and lepton masses (or Yukawa couplings) at the unification scale. Because of supersymmetric (SUSY) threshold corrections the viability of such predictions can depend strongly on the SUSY parameters. For three common minimal SUSY breaking scenarios with anomaly, gauge, and gravity mediation we investigate which GUT scale ratios me/md, mμ/ms, yτ/yb, and yt/yb are allowed when phenomenological constraints from electroweak precision observables, B physics, (g-2)μ, mass limits on sparticles from direct searches as well as, optionally, dark matter constraints are taken into account. We derive possible new predictions for the GUT scale mass ratios and compare them with the phenomenologically allowed ranges. We find that new GUT scale predictions such as mμ/ms=9/2 or 6 and yτ/yb=3/2 or 2 are often favored compared to the ubiquitous relations mμ/ms=3 or yτ/yb=1. They are viable for characteristic SUSY scenarios, testable at the CERN LHC and future colliders. © 2009 The American Physical Society.

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