Measurement of detector-corrected observables sensitive to the anomalous production of events with jets and large missing transverse momentum in $pp$ collisions at $\sqrt{s} = 13$ TeV using the ATLAS detector
ATLAS Collaboration

TL;DR
This paper measures ratios of cross sections involving jets and missing transverse momentum in proton-proton collisions at 13 TeV, aiming to detect anomalies and constrain dark matter models with minimal uncertainties.
Contribution
It introduces a novel ratio-based measurement approach that reduces systematic uncertainties and provides fully corrected data for testing new physics models.
Findings
Data agree with Standard Model predictions.
Constraints placed on dark matter production models.
Measurements are fully corrected for detector effects.
Abstract
Observables sensitive to the anomalous production of events containing hadronic jets and missing momentum in the plane transverse to the proton beams at the Large Hadron Collider are presented. The observables are defined as a ratio of cross sections, for events containing jets and large missing transverse momentum to events containing jets and a pair of charged leptons from the decay of a boson. This definition minimises experimental and theoretical systematic uncertainties in the measurements. This ratio is measured differentially with respect to a number of kinematic properties of the hadronic system in two phase-space regions; one inclusive single-jet region and one region sensitive to vector-boson-fusion topologies. The data are found to be in agreement with the Standard Model predictions and used to constrain a variety of theoretical models for dark-matter…
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