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Measurement of the top quark pole mass using $\text{t}\bar{\text{t}}$+jet events in the dilepton final state at $\sqrt{s}=13$ TeV

In these proceedings, a measurement of the differential cross section of top quark-antiquark pair ($\text{t}\overline{\text{t}}$) production in association with one additional jet ($\text{t}\overline{\text{t}}$+jet) as a function of the inverse of the invariant mass of the $\text{t}\overline{\text{t...

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Autor principal: Wuchterl, Sebastian
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.414.0969
http://cds.cern.ch/record/2820072
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author Wuchterl, Sebastian
author_facet Wuchterl, Sebastian
author_sort Wuchterl, Sebastian
collection CERN
description In these proceedings, a measurement of the differential cross section of top quark-antiquark pair ($\text{t}\overline{\text{t}}$) production in association with one additional jet ($\text{t}\overline{\text{t}}$+jet) as a function of the inverse of the invariant mass of the $\text{t}\overline{\text{t}}$+jet system, $\rho=340\,\text{GeV}/m_{\text{t}\overline{\text{t}}+\text{jet}}$, is presented. The normalized $\text{t}\overline{\text{t}}$+jet cross section is used to extract values for the top quark pole mass $m_{\text{t}}^{\text{pole}}$ by a comparison to theoretical predictions at next-to-leading order accuracy. The used data set corresponds to an integrated luminosity of 36.3fb$^{-1}$ of proton--proton collisions as collected by the CMS experiment at $\sqrt{s}=$ 13 TeV. Events with two opposite-sign leptons are analyzed. Machine learning techniques are employed to improve the kinematic reconstruction of the main observable and the event classification. The unfolding to the parton level is performed using a profiled likelihood fit. Given the ABMP16 parton distribution functions as a reference set, a value of $m_{\text{t}}^{\text{pole}}=172.94\pm1.37\,\text{GeV}$ is extracted using the normalized $\text{t}\overline{\text{t}}$+jet cross section.
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spelling cern-28200722023-06-29T03:38:00Zdoi:10.22323/1.414.0969http://cds.cern.ch/record/2820072engWuchterl, SebastianMeasurement of the top quark pole mass using $\text{t}\bar{\text{t}}$+jet events in the dilepton final state at $\sqrt{s}=13$ TeVhep-exParticle Physics - ExperimentIn these proceedings, a measurement of the differential cross section of top quark-antiquark pair ($\text{t}\overline{\text{t}}$) production in association with one additional jet ($\text{t}\overline{\text{t}}$+jet) as a function of the inverse of the invariant mass of the $\text{t}\overline{\text{t}}$+jet system, $\rho=340\,\text{GeV}/m_{\text{t}\overline{\text{t}}+\text{jet}}$, is presented. The normalized $\text{t}\overline{\text{t}}$+jet cross section is used to extract values for the top quark pole mass $m_{\text{t}}^{\text{pole}}$ by a comparison to theoretical predictions at next-to-leading order accuracy. The used data set corresponds to an integrated luminosity of 36.3fb$^{-1}$ of proton--proton collisions as collected by the CMS experiment at $\sqrt{s}=$ 13 TeV. Events with two opposite-sign leptons are analyzed. Machine learning techniques are employed to improve the kinematic reconstruction of the main observable and the event classification. The unfolding to the parton level is performed using a profiled likelihood fit. Given the ABMP16 parton distribution functions as a reference set, a value of $m_{\text{t}}^{\text{pole}}=172.94\pm1.37\,\text{GeV}$ is extracted using the normalized $\text{t}\overline{\text{t}}$+jet cross section.In these proceedings, a measurement of the differential cross section of top quark-antiquark pair ($\text{t}\bar{\text{t}}$) production in association with one additional jet ($\text{t}\bar{\text{t}}$+jet) as a function of the inverse of the invariant mass of the $\text{t}\bar{\text{t}}$+jet system, $\rho=340\,\text{GeV}/m_{\text{t}\bar{\text{t}}+\text{jet}}$, is presented. The normalized $\text{t}\bar{\text{t}}$+jet cross section is used to extract values for the top quark pole mass $m_{\text{t}}^{\text{pole}}$ by a comparison to theoretical predictions at next-to-leading order accuracy. The used data set corresponds to an integrated luminosity of 36.3fb$^{-1}$ of proton--proton collisions as collected by the CMS experiment at $\sqrt{s}=$ 13 TeV. Events with two opposite-sign leptons are analyzed. Machine learning techniques are employed to improve the kinematic reconstruction of the main observable and the event classification. The unfolding to the parton level is performed using a profiled likelihood fit. Given the ABMP16 parton distribution functions as a reference set, a value of $m_{\text{t}}^{\text{pole}}=172.94\pm1.37\,\text{GeV}$ is extracted using the normalized $\text{t}\bar{\text{t}}$+jet cross section.arXiv:2207.13413oai:cds.cern.ch:28200722022-07-27
spellingShingle hep-ex
Particle Physics - Experiment
Wuchterl, Sebastian
Measurement of the top quark pole mass using $\text{t}\bar{\text{t}}$+jet events in the dilepton final state at $\sqrt{s}=13$ TeV
title Measurement of the top quark pole mass using $\text{t}\bar{\text{t}}$+jet events in the dilepton final state at $\sqrt{s}=13$ TeV
title_full Measurement of the top quark pole mass using $\text{t}\bar{\text{t}}$+jet events in the dilepton final state at $\sqrt{s}=13$ TeV
title_fullStr Measurement of the top quark pole mass using $\text{t}\bar{\text{t}}$+jet events in the dilepton final state at $\sqrt{s}=13$ TeV
title_full_unstemmed Measurement of the top quark pole mass using $\text{t}\bar{\text{t}}$+jet events in the dilepton final state at $\sqrt{s}=13$ TeV
title_short Measurement of the top quark pole mass using $\text{t}\bar{\text{t}}$+jet events in the dilepton final state at $\sqrt{s}=13$ TeV
title_sort measurement of the top quark pole mass using $\text{t}\bar{\text{t}}$+jet events in the dilepton final state at $\sqrt{s}=13$ tev
topic hep-ex
Particle Physics - Experiment
url https://dx.doi.org/10.22323/1.414.0969
http://cds.cern.ch/record/2820072
work_keys_str_mv AT wuchterlsebastian measurementofthetopquarkpolemassusingtexttbartexttjeteventsinthedileptonfinalstateatsqrts13tev