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Resolving Combinatorial Ambiguities in Dilepton $t\bar t$ Event Topologies with Constrained $M_2$ Variables

We advocate the use of on-shell constrained M2 variables in order to mitigate the combinatorial problem in supersymmetry-like events with two invisible particles at the LHC. We show that in comparison to other approaches in the literature, the constrained M2 variables provide superior ansätze for th...

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Detalles Bibliográficos
Autores principales: Debnath, Dipsikha, Kim, Doojin, Kim, Jeong Han, Kong, Kyoungchul, Matchev, Konstantin T.
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.96.076005
http://cds.cern.ch/record/2272380
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author Debnath, Dipsikha
Kim, Doojin
Kim, Jeong Han
Kong, Kyoungchul
Matchev, Konstantin T.
author_facet Debnath, Dipsikha
Kim, Doojin
Kim, Jeong Han
Kong, Kyoungchul
Matchev, Konstantin T.
author_sort Debnath, Dipsikha
collection CERN
description We advocate the use of on-shell constrained M2 variables in order to mitigate the combinatorial problem in supersymmetry-like events with two invisible particles at the LHC. We show that in comparison to other approaches in the literature, the constrained M2 variables provide superior ansätze for the unmeasured invisible momenta and therefore can be usefully applied to discriminate combinatorial ambiguities. We illustrate our procedure with the example of dilepton tt¯ events. We critically review the existing methods based on the Cambridge MT2 variable and MAOS reconstruction of invisible momenta, and show that their algorithm can be simplified without loss of sensitivity, due to a perfect correlation between events with complex solutions for the invisible momenta and events exhibiting a kinematic endpoint violation. Then we demonstrate that the efficiency for selecting the correct partition is further improved by utilizing the M2 variables instead. Finally, we also consider the general case when the underlying mass spectrum is unknown, and no kinematic endpoint information is available.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
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spelling cern-22723802022-08-10T12:33:52Zdoi:10.1103/PhysRevD.96.076005http://cds.cern.ch/record/2272380engDebnath, DipsikhaKim, DoojinKim, Jeong HanKong, KyoungchulMatchev, Konstantin T.Resolving Combinatorial Ambiguities in Dilepton $t\bar t$ Event Topologies with Constrained $M_2$ Variableshep-phParticle Physics - PhenomenologyWe advocate the use of on-shell constrained M2 variables in order to mitigate the combinatorial problem in supersymmetry-like events with two invisible particles at the LHC. We show that in comparison to other approaches in the literature, the constrained M2 variables provide superior ansätze for the unmeasured invisible momenta and therefore can be usefully applied to discriminate combinatorial ambiguities. We illustrate our procedure with the example of dilepton tt¯ events. We critically review the existing methods based on the Cambridge MT2 variable and MAOS reconstruction of invisible momenta, and show that their algorithm can be simplified without loss of sensitivity, due to a perfect correlation between events with complex solutions for the invisible momenta and events exhibiting a kinematic endpoint violation. Then we demonstrate that the efficiency for selecting the correct partition is further improved by utilizing the M2 variables instead. Finally, we also consider the general case when the underlying mass spectrum is unknown, and no kinematic endpoint information is available.We advocate the use of on-shell constrained $M_2$ variables in order to mitigate the combinatorial problem in SUSY-like events with two invisible particles at the LHC. We show that in comparison to other approaches in the literature, the constrained $M_2$ variables provide superior ansatze for the unmeasured invisible momenta and therefore can be usefully applied to discriminate combinatorial ambiguities. We illustrate our procedure with the example of dilepton $t\bar{t}$ events. We critically review the existing methods based on the Cambridge $M_{T2}$ variable and MAOS-reconstruction of invisible momenta, and show that their algorithm can be simplified without loss of sensitivity, due to a perfect correlation between events with complex solutions for the invisible momenta and events exhibiting a kinematic endpoint violation. Then we demonstrate that the efficiency for selecting the correct partition is further improved by utilizing the $M_2$ variables instead. Finally, we also consider the general case when the underlying mass spectrum is unknown, and no kinematic endpoint information is available.arXiv:1706.04995CERN-TH-2017-130oai:cds.cern.ch:22723802017-06-15
spellingShingle hep-ph
Particle Physics - Phenomenology
Debnath, Dipsikha
Kim, Doojin
Kim, Jeong Han
Kong, Kyoungchul
Matchev, Konstantin T.
Resolving Combinatorial Ambiguities in Dilepton $t\bar t$ Event Topologies with Constrained $M_2$ Variables
title Resolving Combinatorial Ambiguities in Dilepton $t\bar t$ Event Topologies with Constrained $M_2$ Variables
title_full Resolving Combinatorial Ambiguities in Dilepton $t\bar t$ Event Topologies with Constrained $M_2$ Variables
title_fullStr Resolving Combinatorial Ambiguities in Dilepton $t\bar t$ Event Topologies with Constrained $M_2$ Variables
title_full_unstemmed Resolving Combinatorial Ambiguities in Dilepton $t\bar t$ Event Topologies with Constrained $M_2$ Variables
title_short Resolving Combinatorial Ambiguities in Dilepton $t\bar t$ Event Topologies with Constrained $M_2$ Variables
title_sort resolving combinatorial ambiguities in dilepton $t\bar t$ event topologies with constrained $m_2$ variables
topic hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1103/PhysRevD.96.076005
http://cds.cern.ch/record/2272380
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AT kimdoojin resolvingcombinatorialambiguitiesindileptontbarteventtopologieswithconstrainedm2variables
AT kimjeonghan resolvingcombinatorialambiguitiesindileptontbarteventtopologieswithconstrainedm2variables
AT kongkyoungchul resolvingcombinatorialambiguitiesindileptontbarteventtopologieswithconstrainedm2variables
AT matchevkonstantint resolvingcombinatorialambiguitiesindileptontbarteventtopologieswithconstrainedm2variables