Viable Supersymmetric Models with an Inverted Scalar Mass Hierarchy at the GUT Scale
arXiv:hep-ph/0008061 · doi:10.1103/PhysRevD.63.015011
Abstract
Supersymmetric models with an inverted mass hierarchy (IMH: multi-TeV first and second generation matter scalars, and sub-TeV third generation and Higgs scalars) have been proposed to ameliorate phenomenological problems arising from flavor changing neutral currents (FCNCs) and CP violating processes, while satisfying conditions of naturalness. Models with an IMH already in place at the GUT scale have been shown to be constrained in that for many model parameter choices, the top squark squared mass is driven to negative values. We delineate regions of parameter space where viable models with a GUT scale IMH can be generated. We find that larger values of GUT scale first and second generation scalar masses act to suppress third generation scalars, leading to acceptable solutions if GUT scale gaugino masses are large enough. We show examples of viable models and comment on their characteristic features. For example, in these models the gluino mass is bounded from below, and effectively decouples, whilst third generation scalars remain at sub-TeV levels. While possibly fulfilling criteria of naturalness, these models present challenges for detection at future pp and e^+e^- collider experiments.
16 page REVTEX file with 6 PS figures
References in corpus (14)
- Multi-TeV Scalars are Natural in Minimal Supergravity
- Focus Points and Naturalness in Supersymmetry
- Calculations of Neutralino-Stau Coannihilation Channels and the Cosmologically Relevant Region of MSSM Parameter Space
- Light Scalar Top Quarks and Supersymmetric Dark Matter
- Minimal Gaugino Mediation
- Impact of Physical Principles at Very High Energy Scales on the Superparticle Mass Spectrum
- Superheavy Supersymmetry from Scalar Mass--A Parameter Fixed Points
- The Superpartner Spectrum of Gaugino Mediation
- Naturally Heavy Scalars in Supersymmetric Grand Unified Theories
- Natural Effective Supersymmetry
- Calculable Sparticle Masses with Radiatively Driven Inverted Mass Hierarchy
- The Reach of the CERN Large Hadron Collider for Gauge-Mediated Supersymmetry Breaking Models
- Phenomenology of flavor-mediated supersymmetry breaking
- Phenomenology of a String-Inspired Supersymmetric Model with Inverted Scalar Mass Hierarchy
Cited by in corpus (22)
- Radiative natural SUSY with a 125 GeV Higgs boson
- Radiative natural supersymmetry: Reconciling electroweak fine-tuning and the Higgs boson mass
- Impact of Muon Anomalous Magnetic Moment on Supersymmetric Models
- Model Independent Approach to Focus Point Supersymmetry: from Dark Matter to Collider Searches
- Upper bounds on sparticle masses from naturalness or how to disprove weak scale supersymmetry
- SUSY Normal Scalar Mass Hierarchy Reconciles (g-2), b->s,gamma and Relic Density
- Is "just-so" Higgs splitting needed for t-b-τYukawa unified SUSY GUTs?
- Electroweak symmetry breaking in supersymmetric models with heavy scalar superpartners
- Aspects of Supersymmetric Models with a Radiatively Driven Inverted Mass Hierarchy
- Higgs and superparticle mass predictions from the string theory landscape
- Desperately Seeking Supersymmetry [SUSY]
- A landscape solution to the SUSY flavor and CP problems
- Radiative Neutralino Decay in Supersymmetric Models
- Higgs funnel region of SUSY dark matter for small and renormalization group effects on pseudoscalar Higgs boson with scalar mass non-universality
- The LHC higgsino discovery plane for present and future SUSY searches
- Non-universal scalar mass scenario with Higgs funnel region of SUSY dark matter: a signal-based analysis for the Large Hadron Collider
- Probing Slepton Mass Non-Universality at e^+e^- Linear Colliders
- Superparticle phenomenology from the natural mini-landscape
- Comparison of SUSY spectra generators for natural SUSY and string landscape predictions
- Radiative natural supersymmetry emergent from the string landscape
- Beyond the Higgs boson at the Tevatron: detecting gluinos from Yukawa-unified SUSY
- Gauge boson fusion as a probe of inverted hierarchies in supersymmetry