Characterising dark matter searches at colliders and direct detection experiments: Vector mediators
arXiv:1407.8257 · doi:10.1007/JHEP01(2015)037
Abstract
We introduce a Minimal Simplified Dark Matter (MSDM) framework to quantitatively characterise dark matter (DM) searches at the LHC. We study two MSDM models where the DM is a Dirac fermion which interacts with a vector and axial-vector mediator. The models are characterised by four parameters: the DM and mediator masses, and the mediator couplings to DM and quarks. The MSDM models accurately capture the full event kinematics, and the dependence on all masses and couplings can be systematically studied. The interpretation of mono-jet searches in this framework can be used to establish an equal-footing comparison with direct detection experiments. For theories with a vector mediator, LHC mono-jet searches possess better sensitivity than direct detection searches for light DM masses (less than 5 GeV). For axial-vector mediators, LHC and direct detection searches generally probe orthogonal directions in the parameter space. We explore the projected limits of these searches from the ultimate reach of the LHC and multi-ton xenon direct detection experiments, and find that the complementarity of the searches remains. Finally, we provide a comparison of limits in the MSDM and effective field theory (EFT) frameworks to highlight the deficiencies of the EFT framework, particularly when exploring the complementarity of mono-jet and direct detection searches.
32 pages, 12 figures. v2: Minor changes to match journal (JHEP) version
References in corpus (29)
- Parton distributions for the LHC
- Matching NLO QCD computations with Parton Shower simulations: the POWHEG method
- Dark Matter Results from 225 Live Days of XENON100 Data
- Results from a Search for Light-Mass Dark Matter with a P-type Point Contact Germanium Detector
- Constraints on Dark Matter from Colliders
- Search for Low-Mass WIMPs with SuperCDMS
- The Tevatron at the Frontier of Dark Matter Direct Detection
- The Large Underground Xenon (LUX) Experiment
- LEP Shines Light on Dark Matter
- Maverick dark matter at colliders
- Parton Distributions for LHC
- The Astrophysical Uncertainties Of Dark Matter Direct Detection Experiments
- Complementarity of dark matter detectors in light of the neutrino background
- Results on low mass WIMPs using an upgraded CRESST-II detector
- First limits on WIMP nuclear recoil signals in ZEPLIN-II: a two phase xenon detector for dark matter detection
- On the Validity of the Effective Field Theory for Dark Matter Searches at the LHC Part III: Analysis for the -channel
- LHC and Tevatron bounds on the dark matter direct detection cross-section for vector mediators
- Axial Dark Matter: the case for an invisible Z'
- Directional Dark Matter Detection Beyond the Neutrino Bound
- Next-to-Leading Order Predictions for Dark Matter Production at Hadron Colliders
- Majorana Dark Matter with a Coloured Mediator: Collider vs Direct and Indirect Searches
- Leptophilic Dark Matter with interactions
- Scattering of Dark Particles with Light Mediators
- Fitting the annual modulation in DAMA with neutrons from muons and neutrinos
- On an unverified nuclear decay and its role in the DAMA experiment
- Quantifying the evidence for Dark Matter in CoGeNT data
- Complementarity of Dark Matter Searches at Resonance
- Surface roughness interpretation of 730 kg days CRESST-II results
- Including the Z in an Effective Field Theory for dark matter at the LHC
Cited by in corpus (25)
- Review of LHC Dark Matter Searches
- A taste of dark matter: Flavour constraints on pseudoscalar mediators
- Limits on spin-dependent WIMP-nucleon cross section obtained from the complete LUX exposure
- Explaining Dark Matter and Decay Anomalies with an Model
- Constraining Dark Sectors at Colliders: Beyond the Effective Theory Approach
- Spin-Dependent Weakly-Interacting-Massive-Particle--Nucleon Cross Section Limits from First Data of PandaX-II Experiment
- Search for an invisibly decaying Higgs boson or dark matter candidates produced in association with a boson in collisions at 13 TeV with the ATLAS detector
- LHC Searches for Dark Sector Showers
- Connecting Dark Matter UV Complete Models to Direct Detection Rates via Effective Field Theory
- Constraints on mediator-based dark matter and scalar dark energy models using TeV collision data collected by the ATLAS detector
- Z-portal dark matter
- Theory for Baryon Number and Dark Matter at the LHC
- Mapping monojet constraints onto Simplified Dark Matter Models
- Search for dark matter in association with an energetic photon in pp collisions at = 13 TeV with the ATLAS detector
- portal to Chern-Simons Dark Matter
- Searches for dark matter signals in simplified models at future hadron colliders
- On Anomaly-Free Dark Matter Models
- Monojet searches for momentum-dependent dark matter interactions
- Dark Matter Signals in Dilepton Production at Hadron Colliders
- Four-Quark Effective Operators at Hadron Colliders
- Minimal Spin-3/2 Dark Matter in a simple -channel model
- The Dark Penguin Shines Light at Colliders
- LHC and dark matter implications of t-b-τ Yukawa unification in split SUSY GUTs
- Dark Matter Energy Deposition and Production from the Table-Top to the Cosmos
- A bonus complementarity in Simplified Models of Dark Matter