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CERN Summer Student Report

One of the features of the SUSY is the R-parity, a multiplicative quantum number which has the value +1 for SM and -1 for SUSY particles. Here is considered the R-parity conserved production of gluino pair at the LHC, with each of them decaying to two quarks and one neutralino. As the end result, af...

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Autor principal: Markovic, Lazar
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:http://cds.cern.ch/record/2788697
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author Markovic, Lazar
author_facet Markovic, Lazar
author_sort Markovic, Lazar
collection CERN
description One of the features of the SUSY is the R-parity, a multiplicative quantum number which has the value +1 for SM and -1 for SUSY particles. Here is considered the R-parity conserved production of gluino pair at the LHC, with each of them decaying to two quarks and one neutralino. As the end result, after the neutralino decay, we get 10 quarks, the so-called 2x5 model. For the decay of neutralinos the R-parity violation was assumed. Masses of neutralino and gluino are set to 50 GeV and 1000 GeV respectively. Using simulated data of 20 000 events, for the first time both small-R and large-R jets are used to target signals where some of the decay products are well separated, but some are close together. It was found that quarks originating from direct gluino decay can be reconstructed using small-R jets, while those originating from neutralino decay can be reconstructed using large-R jets. Further, some variables were tested to see how often in reconstruction do we pick jets with the maximum/minimum values of these variables.
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institution Organización Europea para la Investigación Nuclear
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spelling cern-27886972021-11-09T08:15:31Zhttp://cds.cern.ch/record/2788697engMarkovic, LazarCERN Summer Student ReportParticle Physics - ExperimentOne of the features of the SUSY is the R-parity, a multiplicative quantum number which has the value +1 for SM and -1 for SUSY particles. Here is considered the R-parity conserved production of gluino pair at the LHC, with each of them decaying to two quarks and one neutralino. As the end result, after the neutralino decay, we get 10 quarks, the so-called 2x5 model. For the decay of neutralinos the R-parity violation was assumed. Masses of neutralino and gluino are set to 50 GeV and 1000 GeV respectively. Using simulated data of 20 000 events, for the first time both small-R and large-R jets are used to target signals where some of the decay products are well separated, but some are close together. It was found that quarks originating from direct gluino decay can be reconstructed using small-R jets, while those originating from neutralino decay can be reconstructed using large-R jets. Further, some variables were tested to see how often in reconstruction do we pick jets with the maximum/minimum values of these variables. CERN-STUDENTS-Note-2021-222oai:cds.cern.ch:27886972021-10-26
spellingShingle Particle Physics - Experiment
Markovic, Lazar
CERN Summer Student Report
title CERN Summer Student Report
title_full CERN Summer Student Report
title_fullStr CERN Summer Student Report
title_full_unstemmed CERN Summer Student Report
title_short CERN Summer Student Report
title_sort cern summer student report
topic Particle Physics - Experiment
url http://cds.cern.ch/record/2788697
work_keys_str_mv AT markoviclazar cernsummerstudentreport