Search for dark matter produced in association with a low-multiplicity jet in proton-proton collisions at s = 13 TeV
CMS Collaboration
Abstract
A search for dark matter particles is presented using events with large missing transverse momentum and a single energetic jet containing few constituents. The analysis uses proton-proton collision data recorded by the CMS experiment at a center-of-mass energy of 13 TeV. This corresponds to an integrated luminosity of 138 fb-1, recorded during the 2016-2018 LHC data-taking period. This is the first search at the LHC to employ the low-multiplicity jet signature. Supervised machine learning is used to maximize sensitivity to potential signals in this challenging final state. No excess of events over the standard model background prediction is observed. The results are used to set upper limits on the dark matter production cross section at 95% confidence level (CL) within simplified models featuring vector and axial-vector mediators. For a dark matter particle mass of approximately 150 (550) GeV, mediator masses up to 4250 (3500) GeV are excluded at 95% CL.
Create a lesson
Related papers
A-GHOST: High-rate streaming of trigger-level data to programmable GPU inference
I. Xiotidis, N. Clarke Hall, M. S. Larson et al.
Search for charged-lepton-flavour violating eμtq interactions at s=13 TeV with the ATLAS detector
ATLAS Collaboration
Full Event Interpretation at Belle II: Current Status and Recent Developments
R. Tiwary, M. Marfoli, V. Vobbilisetti et al.
Scaling Collider Event Generation with Residual-Quantized Tokens
Dan Godi, Dmitrii Kobylianskii, Eilam Gross
First double-differential cross-section measurements in proton multiplicity and kinematics for mesonless νμ charged-current interactions on argon using the MicroBooNE detector
MicroBooNE collaboration, P. Abratenko, D. Andrade Aldana et al.
Non-parametric and continuous extraction of amplitudes in realistic electroweak penguin decays
Tingzhen Xiao, Anja Beck, Eluned Smith