Identification of Low-Momentum Muons in the CMS Detector Using Multivariate Techniques in Proton-Proton Collisions at √s=13.6 TeV

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Date

2025

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IOP Publishing Ltd

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HYBRID

Green Open Access

Yes

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Yes
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Abstract

Soft muons with a transverse momentum below 10 GeV are featured in many processes studied by the CMS experiment, such as decays of heavy-flavor hadrons or rare tau lepton decays. Maximizing the selection efficiency for these muons, while simultaneously suppressing backgrounds from long-lived light-flavor hadron decays, is therefore important for the success of the CMS physics program. Multivariate techniques have been shown to deliver better muon identification performance than traditional selection techniques. To take full advantage of the large data set currently being collected during Run 3 of the CERN LHC, a new multivariate classifier based on a gradient-boosted decision tree has been developed. It offers a significantly improved separation of signal and background muons compared to a similar classifier used for the analysis of the Run 2 data. The performance of the new classifier is evaluated on a data set collected with the CMS detector in 2022 and 2023, corresponding to an integrated luminosity of 62 fb(-1).

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Keywords

Data Processing Methods, Performance of High Energy Physics Detectors, Data Integration, Plasmons, Performance Of High Energy Physics Detectors, [PHYS.HEXP] Physics [physics]/High Energy Physics - Experiment [hep-ex], Performance, FOS: Physical sciences, 610, Hadrons, High Energy Physics - Experiment, Subatomär fysik, High Energy Physics - Experiment (hep-ex), Electron Gas, Particle Interactions, Data Streams, Subatomic Physics, Charged Particles, Multivariate Techniques, info:eu-repo/classification/ddc/530, Fermions, Cms Detectors, Bosons, Data Curation, info:eu-repo/classification/ddc/610, Physics Project, Photons, Performance of high energy physics detectors, PARTICLE PHYSICS;LARGE HADRON COLLIDER;CMS, CMS, Physics, Sorting, ddc:530, Excited States, Heavy Flavours, Transverse Momenta, LARGE HADRON COLLIDER, High Energy Physics Detector, Data Reduction, Data Processing Methods, Proton Proton Collisions, Data processing methods; Performance of High Energy Physics Detectors, Data processing methods, PARTICLE PHYSICS, Performance of High Energy Physics Detectors, Performance Of High Energy Physic Detector

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Q4

Scopus Q

Q3
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Source

Journal of Instrumentation

Volume

20

Issue

4

Start Page

P04021

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3

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