A New Calibration Method for Charm Jet Identification Validated With Proton-Proton Collision Events at Root S=13 Tev

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Karapınar, Güler

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HYBRID

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Yes

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26

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167

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Abstract

Many measurements at the LHC require efficient identification of heavy-flavour jets, i.e. jets originating from bottom (b) or charm (c) quarks. An overview of the algorithms used to identify c jets is described and a novel method to calibrate them is presented. This new method adjusts the entire distributions of the outputs obtained when the algorithms are applied to jets of different flavours. It is based on an iterative approach exploiting three distinct control regions that are enriched with either b jets, c jets, or light-flavour and gluon jets. Results are presented in the form of correction factors evaluated using proton-proton collision data with an integrated luminosity of 41.5 fb(-1) at root s = 13 TeV, collected by the CMS experiment in 2017. The closure of the method is tested by applying the measured correction factors on simulated data sets and checking the agreement between the adjusted simulation and collision data. Furthermore, a validation is performed by testing the method on pseudodata, which emulate various mismodelling conditions. The calibrated results enable the use of the full distributions of heavy-flavour identification algorithm outputs, e.g. as inputs to machine-learning models. Thus, they are expected to increase the sensitivity of future physics analyses.

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Keywords

Large detector-systems performance, Pattern recognition, cluster finding, calibration and fitting methods, Fragmentation, Technology, Большой адронный коллайдер, 13000 GeV-cms, large detector-systems performance, 09 Engineering, jet, charm, PARTICLE PHYSICS; LARGE HADRON COLLIDER; CMS, Cluster Finding, High Energy Physics - Experiment, High Energy Physics - Experiment (hep-ex), cluster finding, jet: charm, [PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex], Large detector-systems performance; Pattern recognition, cluster finding, calibration and fitting methods, gluon: jet, fitting methods, High energy physics ; Experimental particle physics ; LHC ; CMS ; p p: scattering ; p p: colliding beams ; B: decay ; tau: hadronic decay ; interaction: gauge ; interaction: model ; transverse momentum: missing-energy ; new physics: search for ; mass spectrum: transverse ; black hole: quantum ; vector boson: mass ; W': leptonic decay ; sensitivity ; leptoquark: coupling ; CERN LHC Coll ; leptoquark: mass: lower limit ; anomaly ; channel cross section: upper limit ; effective field theory ; Higgs, Instrumentation, протон-протонные столкновения, Instruments & Instrumentation, Mathematical Physics, info:eu-repo/classification/ddc/610, Large detector-systems performance, charm: particle identification, 02 Physical Sciences, jet, bottom, CMS, Pattern recognition, cluster finding, calibration and fitting methods, Physics, calibration and fitting methods, 001, Nuclear & Particles Physics, heavy quark, jet, CERN LHC Coll, track data analysis: jet, PARTICLE PHYSICS, Large Detector-Systems Performance, FRAGMENTATION, jet: bottom, numerical calculations: Monte Carlo, ddc:620, p p: scattering, data analysis method, [PHYS.HEXP] Physics [physics]/High Energy Physics - Experiment [hep-ex], p p, scattering, 610, FOS: Physical sciences, Pattern Recognition, 530, Large detector-systems performance; Pattern recognition, cluster finding, calibration and fitting methods;, quark, Pattern recognition, TeV, Large detector-systems performance; Pattern recognition; cluster; finding; calibration and fitting methods; FRAGMENTATION, ЭБ БГУ::ЕСТЕСТВЕННЫЕ И ТОЧНЫЕ НАУКИ::Физика, Engineering & allied operations, Astrophysique, Large detector-systems performance; Pattern recognition; cluster finding; calibration and fitting methods, Calibration and fitting methods, идентификация струй, Science & Technology, flavor, hep-ex, pattern recognition, Cluster finding, 028, gluon, jet, LARGE HADRON COLLIDER, calibration, sensitivity, 620, нижние кварки, Physics and Astronomy, heavy quark: jet, Calibration and Fitting Methods, p p: colliding beams, info:eu-repo/classification/ddc/620, experimental results

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01 natural sciences, 0103 physical sciences

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17

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3

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