Searches for Dark Matter at the LHC: A Multivariate Analysis in the Mono- Channel
arXiv:1507.08294 · doi:10.1103/PhysRevD.92.115013
Abstract
We study dark matter (DM) production in the mono-Z channel at the 13 TeV LHC both in an effective field theory framework as well as in simplified models with vector mediators, using a multivariate analysis. For DM-quark effective operators with scalar, vector, and tensor couplings and DM mass of 100 GeV, the 5 reach in the DM interaction scale is around 2, 1, and 3 TeV, respectively, for 3 ab and assuming a 5\% systematic uncertainty on the total background normalization. For simplified models with leptophobic vector mediators, the 5 reach for the mass of the mediator is 1.7 TeV also assuming a 5\% systematics and 3 ab of integrated luminosity. The reach for the dark matter interaction scale obtained with the multivariate analysis using a likelihood function discriminant is at least twice as high as that obtained from a simple cut and count analysis, once systematics on the background normalization larger than a few percent are taken into account. Moreover, the reach is much more stable against degradation due these systematic uncertainties.
17 pages, 10 figures
References in corpus (15)
- PYTHIA 6.4 Physics and Manual
- Constraints on Dark Matter from Colliders
- The Tevatron at the Frontier of Dark Matter Direct Detection
- Maverick dark matter at colliders
- Evaluation of three methods for calculating statistical significance when incorporating a systematic uncertainty into a test of the background-only hypothesis for a Poisson process
- Deducing the nature of dark matter from direct and indirect detection experiments in the absence of collider signatures of new physics
- On measuring the masses of pair-produced semi-invisibly decaying particles at hadron colliders
- Observation of Single Top Quark Production and Measurement of |Vtb| with CDF
- Constraining Dark Sectors with Monojets and Dijets
- Next-to-Leading Order Predictions for Dark Matter Production at Hadron Colliders
- The Invisible Z' at the LHC
- Measurements of the ZZ production cross sections in the 2 l 2 nu channel in proton-proton collisions at sqrt(s) = 7 and 8 TeV and combined constraints on triple gauge couplings
- Unravelling the sbottom spin at the CERN LHC
- Dark Matter on Top
- Simplified models for same-spin new physics scenarios
Cited by in corpus (20)
- ALPs Effective Field Theory and Collider Signatures
- Implications of unitarity and gauge invariance for simplified dark matter models
- Simplified Models vs. Effective Field Theory Approaches in Dark Matter Searches
- Looking through the Pseudo-Scalar Portal into Dark Matter: Novel Mono-Higgs and Mono- Signatures at LHC
- Resonant Di-Higgs Production at Gravitational Wave Benchmarks: A Collider Study using Machine Learning
- Surprises from Complete Vector Portal Theories: New Insights into the Dark Sector and its Interplay with Higgs Physics
- Can We Discover Double Higgs Production at the LHC?
- Non-linear Higgs portal to Dark Matter
- Simplified Dark Matter Models with Charged Mediators: Prospects for Direct Detection
- Mono-Higgs signature in fermionic dark matter model
- Anapole Dark Matter via Vector Boson Fusion Processes at the LHC
- Collider Detection of Dark Matter Electromagnetic Anapole Moments
- Actual Physics behind Mono-X
- Probing the Dark Sector through Mono-Z Boson Leptonic Decays
- Z-pole test of effective dark matter diboson interactions at the CEPC
- Dark Matter Spin Characterisation in Mono- Channels
- Exploring Four Fermion Contact Couplings of a Dark Fermion and an Electron at Hadron Colliders and Direct Detection Experiments
- Confronting Dirac Fermionic Dark Matter with Recent Data
- Probing compressed dark sectors at 100 TeV in the dileptonic mono-Z channel
- Constraining Gluonic Contact Interaction of a Neutrino-philic Dark Fermion at Hadron Colliders and Direct Detection Experiments