Linear Collider Capabilities for Supersymmetry in Dark Matter Allowed Regions of the mSUGRA Model
arXiv:hep-ph/0311351 · doi:10.1088/1126-6708/2004/02/007
Abstract
Recent comparisons of minimal supergravity (mSUGRA) model predictions with WMAP measurements of the neutralino relic density point to preferred regions of model parameter space. We investigate the reach of linear colliders (LC) with and 1 TeV for SUSY in the framework of the mSUGRA model. We find that LCs can cover the entire stau co-annihilation region provided $\tanβ\alt 30$. In the hyperbolic branch/focus point (HB/FP) region of parameter space, specialized cuts are suggested to increase the reach in this important ``dark matter allowed'' area. In the case of the HB/FP region, the reach of a LC extends well past the reach of the CERN LHC. We examine a case study in the HB/FP region, and show that the MSSM parameters and can be sufficiently well-measured to demonstrate that one would indeed be in the HB/FP region, where the lightest chargino and neutralino have a substantial higgsino component.
29 pages, 15 EPS figures; updated version slightly modified to conform with published version
References in corpus (15)
- Search for the Standard Model Higgs Boson at LEP
- Measurement of the Negative Muon Anomalous Magnetic Moment to 0.7 ppm
- Supersymmetric Dark Matter in Light of WMAP
- Updated Estimate of the Muon Magnetic Moment Using Revised Results from e+e- Annihilation
- Dark Matter Detection in the Light of Recent Experimental Results
- WMAP Constraints, SUSY Dark Matter and Implications for the Direct Detection of SUSY
- WMAPing out Supersymmetric Dark Matter and Phenomenology
- Updated Reach of the CERN LHC and Constraints from Relic Density, b->s gamma and a(mu) in the mSUGRA Model
- Chi**2 analysis of the minimal supergravity model including WMAP, g(mu)-2 and b -> s gamma constraints
- WMAPing the Universe: Supersymmetry, Dark Matter, Dark Energy, Proton Decay and Collider Physics
- Direct Detection of Dark Matter in Supersymmetric Models
- Likelihood Analysis of the CMSSM Parameter Space
- Reach of the Fermilab Tevatron for minimal supergravity in the region of large scalar masses
- Indirect Evidence for the Supersymmetric Nature of Dark Matter from the Combined Data on Galactic Positrons, Antiprotons and Gamma Rays
- mSUGRA At A 500-GeV Linear Collider
Cited by in corpus (49)
- Proton stability in grand unified theories, in strings, and in branes
- Physics Interplay of the LHC and the ILC
- Radiative natural SUSY with a 125 GeV Higgs boson
- New Gamma-Ray Contributions to Supersymmetric Dark Matter Annihilation
- Radiative natural supersymmetry: Reconciling electroweak fine-tuning and the Higgs boson mass
- The Higgs sector of the phenomenological MSSM in the light of the Higgs boson discovery
- Physics at the e+ e- Linear Collider
- Natural Supersymmetry: LHC, dark matter and ILC searches
- Hidden SUSY at the LHC: the light higgsino-world scenario and the role of a lepton collider
- Markov Chain Monte Carlo Exploration of Minimal Supergravity with Implications for Dark Matter
- WMAP constraints on SUGRA models with non-universal gaugino masses and prospects for direct detection
- Model Independent Approach to Focus Point Supersymmetry: from Dark Matter to Collider Searches
- Indirect Sensitivities to the Scale of Supersymmetry
- Exploring the BWCA (Bino-Wino Co-Annihilation) Scenario for Neutralino Dark Matter
- The MSSM with heavy scalars
- Neutralino Dark Matter in mSUGRA: reopening the light Higgs pole window
- Updated Constraints on the Minimal Supergravity Model
- Supersymmetry discovery potential of the LHC at 10 and 14 TeV without and with missing
- Recoil Detection of the Lightest Neutralino in MSSM Singlet Extensions
- Precision gluino mass at the LHC in SUSY models with decoupled scalars
- Mixed Wino Dark Matter: Consequences for Direct, Indirect and Collider Detection
- SUSY Normal Scalar Mass Hierarchy Reconciles (g-2), b->s,gamma and Relic Density
- Indirect, Direct and Collider Detection of Neutralino Dark Matter
- Physics at a Higgsino Factory
- Collider and Dark Matter Phenomenology of Models with Mirage Unification
- Prospects for Sparticle Discovery in Variants of the MSSM
- Using b-tagging to enhance the SUSY reach of the CERN Large Hadron Collider
- Two Photon Background and the Reach of a Linear Collider for Supersymmetry in WMAP Favored Coannihilation Regions
- Measuring Modular Weights in Mirage Unification Models at the LHC and ILC
- Dark matter and the LHC
- The Quest for Supersymmetry: Early LHC Results versus Direct and Indirect Neutralino Dark Matter Searches
- Mixed Higgsino Dark Matter from a Reduced SU(3) Gaugino Mass: Consequences for Dark Matter and Collider Searches
- Lepton Flavor Violation, Neutralino Dark Matter and the Reach of the LHC
- Collider and Dark Matter Searches in Models with Mixed Modulus-Anomaly Mediated SUSY Breaking
- Relic density and elastic scattering cross sections of the neutralino in the MSSM with CP-violating phases
- Enlarging mSUGRA parameter space by decreasing pre-BBN Hubble rate in Scalar-Tensor Cosmologies
- Collider, direct and indirect detection of supersymmetric dark matter
- Mixed Higgsino Dark Matter from a Large SU(2) Gaugino Mass
- Post LHC8 SUSY benchmark points for ILC physics
- The Stau Neutralino Co-annihilation Region at an International Linear Collider
- Solutions of Minimal Four Dimensional de Sitter Supergravity
- Colliders as a simultaneous probe of supersymmetric dark matter and Terascale cosmology
- Dark matter direct detection in the MSSM with heavy scalars
- Finite Temperature Corrections to Relic Density Calculations
- Suppression of the neutralino relic density with supersymmetric CP violation
- Modular Invariant Soft Breaking, WMAP, Dark Matter and Sparticle Mass Limits
- Upper limits on sparticle masses from WMAP dark matter constraints with modular invariant soft breaking
- Standard Model and Beyond
- Determination of Dark Matter Properties at High-Energy Colliders