Discovery potential of the next-to-minimal supergravity-motivated model
arXiv:0808.0770 · doi:10.1103/PhysRevD.78.055001
Abstract
Applying a likelihood analysis to the next-to-minimal supergravity-motivated model, we identify parameter space regions preferred by present experimental limits from collider, astrophysical, and low energy measurements. We then show that favored regions are amenable to detection by a combination of the CERN Large Hadron Collider and an upgraded Cryogenic Dark Matter Search, provided that the more than three sigma discrepancy in the difference of the experimental and the standard theoretical values of the anomalous magnetic moment of the muon prevails in the future.
Version appeared in Phys. Rev. D
References in corpus (5)
- NMSPEC: A Fortran code for the sparticle and Higgs masses in the NMSSM with GUT scale boundary conditions
- Higgs Sector in Extensions of the MSSM
- The muon g-2 and the bounds on the Higgs boson mass
- The Supersymmetric Parameter Space in Light of B-physics Observables and Electroweak Precision Data
- Recoil Detection of the Lightest Neutralino in MSSM Singlet Extensions