Linking Natural Supersymmetry to Flavour Physics
arXiv:1308.1090 · doi:10.1007/JHEP01(2014)117
Abstract
With the aim of linking natural supersymmetry to flavour physics, a model is proposed based on a family symmetry G \times U(1), where G is a discrete nonabelian subgroup of SU(2), with both F-term and (abelian) D-term supersymmetry breaking. A good fit to the fermion masses and mixing is obtained with the same U(1) charges for the left- and right- handed quarks of the first two families and the right-handed bottom quark, and with zero charge for the left-handed top-bottom doublet and the the right handed top. The model shows an interesting indirect correlation between the correct prediction for the V_{ub}/V_{cb} ratio and large right-handed rotations in the (s,b) sector, required to diagonalise the Yukawa matrix. For the squarks, one obtains almost degenerate first two generations. The main source of the FCNC and CP violation effects is the splitting between the first two families and the right-handed sbottom determined by the relative size of F-term and D-term supersymmetry breaking. The presence of the large right-handed rotation implies that the bounds on the masses of the first two families of squarks and the right handed sbottom are in a few to a few tens TeV range. The picture that emerges is light stops and left handed sbottom and much heavier other squarks.
29 pages, v2: Discussion on mu->e gamma modified, added some clarifications and references; published version
References in corpus (9)
- Stringy origin of non-Abelian discrete flavor symmetries
- Hierarchical Soft Terms and Flavor Physics
- Light non-degenerate squarks at the LHC
- Discrete flavor symmetries in D-brane models
- Non-Degenerate Squarks from Flavored Gauge Mediation
- Inverted sfermion mass hierarchy and the Higgs boson mass in the MSSM
- Beyond MFV in family symmetry theories of fermion masses
- Non-Abelian discrete R symmetries
- A Light Stop with Flavor in Natural SUSY
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- Uncovering Natural Supersymmetry via the interplay between the LHC and Direct Dark Matter Detection
- A Realistic U(2) Model of Flavor
- Supergravity gauge theories strike back: There is no crisis for SUSY but a new collider may be required for discovery
- Fermion masses, critical behavior and universality
- Light third-generation squarks from flavour gauge messengers
- Quark masses, CKM angles and Lepton Flavour Universality violation
- Natural Supersymmetry and Dynamical Flavour with Metastable Vacua
- Neutrino Observables from a U(2) Flavor Symmetry
- The Flavour of Natural SUSY
- Universal Approximations for Flavor Models
- A Realization of Effective SUSY with Strong Unification
- New Physics Searches at Kaon and Hyperon Factories