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A method for correcting the substructure of multiprong jets using the Lund jet plane

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Springer Science and Business Media LLC

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A bstract Many analyses at the CERN LHC exploit the substructure of jets to identify heavy resonances produced with high momenta that decay into multiple quarks and/or gluons. This paper presents a new technique for correcting the substructure of simulated large-radius jets from multiprong decays. The technique is based on reclustering the jet constituents into several subjets such that each subjet represents a single prong, and separately correcting the radiation pattern in the Lund jet plane of each subjet using a correction derived from data. The data presented here correspond to an integrated luminosity of 138 fb − 1 collected by the CMS experiment between 2016–2018 at a center-of-mass energy of 13 TeV. The correction procedure improves the agreement between data and simulation for several different substructure observables of multiprong jets. This technique establishes, for the first time, a robust calibration for the substructure of jets with four or more prongs, enabling future measurements and searches for new phenomena containing these signatures.

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Journal of High Energy Physics

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OPEN

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Hadron-Hadron Scattering, Particle physics, Large hadron collider, CMS, CMS, Physics, ddc:530, FOS: Physical sciences, Large hadron collider, High Energy Physics - Experiment, Subatomär fysik, High Energy Physics - Experiment (hep-ex), Subatomic Physics, Jets, Particle physics, LHC, High energy physics, info:eu-repo/classification/ddc/530, Experimental particle physics

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