Heart of Darkness: The Significance of the Zeptobarn Scale for Neutralino Direct Detection
arXiv:1009.3934 · doi:10.1088/1475-7516/2011/05/018
Abstract
The direct detection of dark matter through its elastic scattering off nucleons is among the most promising methods for establishing the particle identity of dark matter. The current bound on the spin-independent scattering cross section is sigma^SI < 10 zb for dark matter masses m_chi ~ 100 GeV, with improved sensitivities expected soon. We examine the implications of this progress for neutralino dark matter. We work in a supersymmetric framework well-suited to dark matter studies that is simple and transparent, with models defined in terms of four weak-scale parameters. We first show that robust constraints on electric dipole moments motivate large sfermion masses mtilde > 1 TeV, effectively decoupling squarks and sleptons from neutralino dark matter phenomenology. In this case, we find characteristic cross sections in the narrow range 1 zb < sigma^SI < 40 zb for m_chi > 70 GeV. As sfermion masses are lowered to near their experimental limit mtilde ~ 400 GeV, the upper and lower limits of this range are extended, but only by factors of around two, and the lower limit is not significantly altered by relaxing many particle physics assumptions, varying the strange quark content of the nucleon, including the effects of galactic small-scale structure, or assuming other components of dark matter. Experiments are therefore rapidly entering the heart of dark matter-favored supersymmetry parameter space. If no signal is seen, supersymmetric models must contain some level of fine-tuning, and we identify and analyze several possibilities. Barring large cancellations, however, in a large and generic class of models, if thermal relic neutralinos are a significant component of dark matter, experiments will discover them as they probe down to the zeptobarn scale.
35 pages, 11 figures; v2: references added, figures extended to 2 TeV neutralino masses, XENON100 results included, published version
References in corpus (23)
- Dark Matter Candidates from Particle Physics and Methods of Detection
- An Improved Experimental Limit on the Electric Dipole Moment of the Neutron
- New results from DAMA/LIBRA
- Results from a Search for Light-Mass Dark Matter with a P-type Point Contact Germanium Detector
- micrOMEGAs2.0: a program to calculate the relic density of dark matter in a generic model
- Estimate of BR(B -> X_s gamma) at O(alpha_s^2)
- Constraints on Dark Matter from Colliders
- The Well-Tempered Neutralino
- First Dark Matter Results from the XENON100 Experiment
- The Tevatron at the Frontier of Dark Matter Direct Detection
- Non-relativistic effective theory of dark matter direct detection
- NNLO QCD corrections to the B -> X_s gamma matrix elements using interpolation in m_c
- Higgs Physics as a Window Beyond the MSSM (BMSSM)
- Improved Limits on Spin-Dependent WIMP-Proton Interactions from a Two Liter CFI Bubble Chamber
- Interpreting the recent results on direct search for dark matter particles in terms of relic neutralino
- Galactic Substructure and Direct Detection of Dark Matter
- Solar and Atmospheric Neutrinos: Background Sources for the Direct Dark Matter Searches
- Light Neutralinos with Large Scattering Cross Sections in the Minimal Supersymmetric Standard Model
- Prospects for direct dark matter detection in the Constrained MSSM
- Relic density of neutralino dark matter in the MSSM with CP violation
- Against Tachyophobia
- Mixed Higgsino Dark Matter from a Large SU(2) Gaugino Mass
- Discovering SUSY with in the First LHC Physics Run
Cited by in corpus (5)
- NMSSM Interpretation of the Galactic Center Excess
- Light Higgsino Decays as a Probe of the NMSSM
- Dark Matter at the Pseudoscalar Higgs Resonance in the pMSSM and SUSY GUTs
- Neutron calibration facility with an Am-Be source for pulse shape discrimination measurement of CsI(Tl) crystals
- Post LHC7 SUSY benchmark points for ILC physics