Light staus and enhanced Higgs diphoton rate with non-universal gaugino masses and SO(10) Yukawa unification
arXiv:1307.7999 · doi:10.1007/JHEP10(2013)088
Abstract
It is shown that substantially enhanced Higgs to diphoton rate induced by light staus with large left-right mixing in MSSM requires at the GUT scale non-universal gaugino masses with bino and/or wino lighter than gluino. The possibility of such enhancement is investigated in MSSM models with arbitrary gaugino masses at the GUT scale with additional restriction of top-bottom-tau Yukawa unification, as predicted by minimal SO(10) GUTs. Many patterns of gaugino masses leading to enhanced Higgs to diphoton rate and the Yukawa unification are identified. Some of these patterns can be accommodated in a well-motivated scenarios such as mirage mediation or SUSY breaking F-terms being a non-singlet of SO(10). Phenomenological implications of a scenario with non-universal gaugino masses generated by a mixture of the singlet F-term and the F-term in a 24-dimensional representation of SU(5) SO(10) are studied in detail. Possible non-universalities of other soft terms generated by such F-terms are discussed. The enhancement of Higgs to diphoton rate up to 30% can be obtained in agreement with all phenomenological constraints, including vacuum metastability bounds. The lightest sbottom and pseudoscalar Higgs are within easy reach of the 14 TeV LHC. The LSP can be either bino-like or wino-like. The thermal relic abundance in the former case may be in agreement with the cosmological data thanks to efficient stau coannihilation.
28 pages, 8 figures, comments and references added, matches published version
References in corpus (17)
- micrOMEGAs2.0: a program to calculate the relic density of dark matter in a generic model
- Estimate of BR(B -> X_s gamma) at O(alpha_s^2)
- The Well-Tempered Neutralino
- Measurement of the B(s) to mu+ mu- branching fraction and search for B0 to mu+ mu- with the CMS Experiment
- Measurement of the branching fraction and search for decays at the LHCb experiment
- The Muon Magnetic Moment and Supersymmetry
- De Sitter Vacua from Matter Superpotentials
- Higgs boson mass in supersymmetry to three loops
- Dark matter allowed scenarios for Yukawa-unified SO(10) SUSY GUTs
- Natural Dark Matter in SUSY GUTs with Non-universal Gaugino Masses
- LHC Higgs Signatures from Extended Electroweak Gauge Symmetry
- Three-Loop Corrections to the Higgs Boson Mass and Implications for Supersymmetry at the LHC
- Stau with Large Mass Difference and Enhancement of the Higgs to Diphoton Decay Rate in the MSSM
- Inverted sfermion mass hierarchy and the Higgs boson mass in the MSSM
- Viable and testable SUSY GUTs with Yukawa unification: the case of split trilinears
- Yukawa unification in SUSY SO(10) in light of the LHC Higgs data
- Implications of light charginos for Higgs observables, LHC searches and dark matter
Cited by in corpus (14)
- Precision Measurements of Higgs Couplings: Implications for New Physics Scales
- Non-universal gaugino mass GUT models in the light of dark matter and LHC constraints
- Reviving trinification models through an -extended supersymmetric GUT
- Upper bounds on sparticle masses from muon g-2 and the Higgs mass and the complementarity of future colliders
- Scale hierarchies, symmetry breaking and particle spectra in SU(3)-family extended SUSY trinification
- GUT-Inspired Supersymmetric Model for h\rightarrow γγand Muon g-2
- Particle physics and cosmology of the string derived no-scale flipped
- Yukawa Unification and Sparticle Spectroscopy in Gauge Mediation Models
- Effects of Neutrino Inverse Seesaw Mechanism on the Sparticle Spectrum in CMSSM and NUHM2
- Top Quark and Higgs Boson Masses in Supersymmetric Models
- Supersymmetric SO(10) Grand Unification at the LHC and Beyond
- Non-universal SUGRA at LHC: Prospects and Discovery Potential
- Comparatively Light Extra Higgs States as Signature of SUSY GUTs with 3rd Family Yukawa Unification
- Yukawa Unification in Non-Holomorphic MSSM