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Collider constraints on electroweakinos in the presence of a light gravitino

Using the GAMBIT global fitting framework, we constrain the MSSM with an eV-scale gravitino as the lightest supersymmetric particle, and the six electroweakinos (neutralinos and charginos) as the only other light new states. We combine 15 ATLAS and 12 CMS searches at 13 TeV, along with a large colle...

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Autores principales: Ananyev, Viktor, Balázs, Csaba, Beniwal, Ankit, Braseth, Lasse Lorentz, Buckley, Andy, Butterworth, Jonathan, Chang, Christopher, Danninger, Matthias, Fowlie, Andrew, Gonzalo, Tomás E., Kvellestad, Anders, Mahmoudi, Farvah, Martinez, Gregory D., Prim, Markus T., Procter, Tomasz, Raklev, Are, Scott, Pat, Stöcker, Patrick, Abeele, Jeriek Van den, White, Martin, Zhang, Yang
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:https://dx.doi.org/10.1140/epjc/s10052-023-11574-z
http://cds.cern.ch/record/2852808
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author Ananyev, Viktor
Balázs, Csaba
Beniwal, Ankit
Braseth, Lasse Lorentz
Buckley, Andy
Butterworth, Jonathan
Chang, Christopher
Danninger, Matthias
Fowlie, Andrew
Gonzalo, Tomás E.
Kvellestad, Anders
Mahmoudi, Farvah
Martinez, Gregory D.
Prim, Markus T.
Procter, Tomasz
Raklev, Are
Scott, Pat
Stöcker, Patrick
Abeele, Jeriek Van den
White, Martin
Zhang, Yang
author_facet Ananyev, Viktor
Balázs, Csaba
Beniwal, Ankit
Braseth, Lasse Lorentz
Buckley, Andy
Butterworth, Jonathan
Chang, Christopher
Danninger, Matthias
Fowlie, Andrew
Gonzalo, Tomás E.
Kvellestad, Anders
Mahmoudi, Farvah
Martinez, Gregory D.
Prim, Markus T.
Procter, Tomasz
Raklev, Are
Scott, Pat
Stöcker, Patrick
Abeele, Jeriek Van den
White, Martin
Zhang, Yang
author_sort Ananyev, Viktor
collection CERN
description Using the GAMBIT global fitting framework, we constrain the MSSM with an eV-scale gravitino as the lightest supersymmetric particle, and the six electroweakinos (neutralinos and charginos) as the only other light new states. We combine 15 ATLAS and 12 CMS searches at 13 TeV, along with a large collection of ATLAS and CMS measurements of Standard Model signatures. This model, which we refer to as the ${{\tilde{G}}}$-EWMSSM, exhibits quite varied collider phenomenology due to its many permitted electroweakino production processes and decay modes. Characteristic ${{\tilde{G}}}$-EWMSSM signal events have two or more Standard Model bosons and missing energy due to the escaping gravitinos. While much of the ${{\tilde{G}}}$-EWMSSM parameter space is excluded, we find several viable parameter regions that predict phenomenologically rich scenarios with multiple neutralinos and charginos within the kinematic reach of the LHC during Run 3, or the High Luminosity LHC. In particular, we identify scenarios with Higgsino-dominated electroweakinos as light as 140 GeV that are consistent with our combined set of collider searches and measurements. The full set of ${{\tilde{G}}}$-EWMSSM parameter samples and GAMBIT input files generated for this work is available via Zenodo.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
record_format invenio
spelling cern-28528082023-06-15T11:24:02Zdoi:10.1140/epjc/s10052-023-11574-zhttp://cds.cern.ch/record/2852808engAnanyev, ViktorBalázs, CsabaBeniwal, AnkitBraseth, Lasse LorentzBuckley, AndyButterworth, JonathanChang, ChristopherDanninger, MatthiasFowlie, AndrewGonzalo, Tomás E.Kvellestad, AndersMahmoudi, FarvahMartinez, Gregory D.Prim, Markus T.Procter, TomaszRaklev, AreScott, PatStöcker, PatrickAbeele, Jeriek Van denWhite, MartinZhang, YangCollider constraints on electroweakinos in the presence of a light gravitinohep-phParticle Physics - PhenomenologyUsing the GAMBIT global fitting framework, we constrain the MSSM with an eV-scale gravitino as the lightest supersymmetric particle, and the six electroweakinos (neutralinos and charginos) as the only other light new states. We combine 15 ATLAS and 12 CMS searches at 13 TeV, along with a large collection of ATLAS and CMS measurements of Standard Model signatures. This model, which we refer to as the ${{\tilde{G}}}$-EWMSSM, exhibits quite varied collider phenomenology due to its many permitted electroweakino production processes and decay modes. Characteristic ${{\tilde{G}}}$-EWMSSM signal events have two or more Standard Model bosons and missing energy due to the escaping gravitinos. While much of the ${{\tilde{G}}}$-EWMSSM parameter space is excluded, we find several viable parameter regions that predict phenomenologically rich scenarios with multiple neutralinos and charginos within the kinematic reach of the LHC during Run 3, or the High Luminosity LHC. In particular, we identify scenarios with Higgsino-dominated electroweakinos as light as 140 GeV that are consistent with our combined set of collider searches and measurements. The full set of ${{\tilde{G}}}$-EWMSSM parameter samples and GAMBIT input files generated for this work is available via Zenodo.Using the GAMBIT global fitting framework, we constrain the MSSM with an eV-scale gravitino as the lightest supersymmetric particle, and the six electroweakinos (neutralinos and charginos) as the only other light new states. We combine 15 ATLAS and 12 CMS searches at 13 TeV, along with a large collection of ATLAS and CMS measurements of Standard Model signatures. This model, which we refer to as the $\tilde G$-EWMSSM, exhibits quite varied collider phenomenology due to its many permitted electroweakino production processes and decay modes. Characteristic $\tilde G$-EWMSSM signal events have two or more Standard Model bosons and missing energy due to the escaping gravitinos. While much of the $\tilde G$-EWMSSM parameter space is excluded, we find several viable parameter regions that predict phenomenologically rich scenarios with multiple neutralinos and charginos within the kinematic reach of the LHC during Run 3, or the High Luminosity LHC. In particular, we identify scenarios with Higgsino-dominated electroweakinos as light as 140 GeV that are consistent with our combined set of collider searches and measurements. The full set of $\tilde G$-EWMSSM parameter samples and GAMBIT input files generated for this work is available via Zenodo.arXiv:2303.09082TTP23-009KCL-PH-TH/2023-21gambit-physics-23MCnet-23-05, ADP-23-08/T1217CERN-TH-2023-043oai:cds.cern.ch:28528082023-03-16
spellingShingle hep-ph
Particle Physics - Phenomenology
Ananyev, Viktor
Balázs, Csaba
Beniwal, Ankit
Braseth, Lasse Lorentz
Buckley, Andy
Butterworth, Jonathan
Chang, Christopher
Danninger, Matthias
Fowlie, Andrew
Gonzalo, Tomás E.
Kvellestad, Anders
Mahmoudi, Farvah
Martinez, Gregory D.
Prim, Markus T.
Procter, Tomasz
Raklev, Are
Scott, Pat
Stöcker, Patrick
Abeele, Jeriek Van den
White, Martin
Zhang, Yang
Collider constraints on electroweakinos in the presence of a light gravitino
title Collider constraints on electroweakinos in the presence of a light gravitino
title_full Collider constraints on electroweakinos in the presence of a light gravitino
title_fullStr Collider constraints on electroweakinos in the presence of a light gravitino
title_full_unstemmed Collider constraints on electroweakinos in the presence of a light gravitino
title_short Collider constraints on electroweakinos in the presence of a light gravitino
title_sort collider constraints on electroweakinos in the presence of a light gravitino
topic hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1140/epjc/s10052-023-11574-z
http://cds.cern.ch/record/2852808
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