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Supersymmetric dark matter with a cosmological constant

1998/09/23 by James D. Wells
Physics and Astronomy · #Cosmological constant #Cosmology and Gravitation Theories #Dark Matter and Cosmic Phenomena #Dark matter #Gaugino #Gravitino #Lambda-CDM model #Lightest Supersymmetric Particle #Moduli #Particle physics theoretical and experimental studies #Supergravity #Supersymmetry #hep-ph

paper · pdf · doi:10.1016/s0370-2693(98)01327-6

published as Phys.Lett. B443 (1998) 196-200 · 8 pages, latex, 2 figures

arxiv created 1998/09/23 · openalex publication_date 1998/12/01 · arxiv updated 2009/11/30 · openalex created_date 2016/06/24 · openalex updated_date 2026/08/05

Abstract

Recent measurements of cosmological parameters from the microwave background radiation, type Ia supernovae, and the age of globular clusters help determine the relic matter density in the universe. It is first shown with mild cosmological assumptions that the relic matter density satisfies ΩM h2 < 0.6 independent of the cosmological constant and independent of the SNIa data. Including the SNIa data, the constraint becomes ΩM h2 < 0.35. This result is then applied to supersymmetric models motivated by generic features in supergravity mediated supersymmetry breaking. The result is an upper bound on gaugino masses within reach of the LHC and a 1.5 TeV lepton collider. Thus, cosmological considerations are beginning to limit the supersymmetric mass spectra in the experimentally verifiable range without recourse to finetuning arguments, and without assuming a zero cosmological constant.

Citations