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Colorful Twisted Top Partners and Partnerium at the LHC

In scenarios that stabilize the electroweak scale, the top quark is typically accompanied by partner particles. In this work, we demonstrate how extended stabilizing symmetries can yield scalar or fermionic top partners that transform as ordinary color triplets but carry exotic electric charges. We...

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Detalles Bibliográficos
Autores principales: Kats, Yevgeny, McCullough, Matthew, Perez, Gilad, Soreq, Yotam, Thaler, Jesse
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP06(2017)126
http://cds.cern.ch/record/2259465
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author Kats, Yevgeny
McCullough, Matthew
Perez, Gilad
Soreq, Yotam
Thaler, Jesse
author_facet Kats, Yevgeny
McCullough, Matthew
Perez, Gilad
Soreq, Yotam
Thaler, Jesse
author_sort Kats, Yevgeny
collection CERN
description In scenarios that stabilize the electroweak scale, the top quark is typically accompanied by partner particles. In this work, we demonstrate how extended stabilizing symmetries can yield scalar or fermionic top partners that transform as ordinary color triplets but carry exotic electric charges. We refer to these scenarios as “hypertwisted” since they involve modifications to hypercharge in the top sector. As proofs of principle, we construct two hypertwisted scenarios: a supersymmetric construction with spin-0 top partners, and a composite Higgs construction with spin-1/2 top partners. In both cases, the top partners are still phenomenologically compatible with the mass range motivated by weak-scale naturalness. The phenomenology of hypertwisted scenarios is diverse, since the lifetimes and decay modes of the top partners are model dependent. The novel coupling structure opens up search channels that do not typically arise in top-partner scenarios, such as pair production of top-plus-jet resonances. Furthermore, hypertwisted top partners are typically sufficiently long lived to form “top-partnerium” bound states that decay predominantly via annihilation, motivating searches for rare narrow resonances with diboson decay modes.
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spelling cern-22594652023-05-21T07:14:30Zdoi:10.1007/JHEP06(2017)126http://cds.cern.ch/record/2259465engKats, YevgenyMcCullough, MatthewPerez, GiladSoreq, YotamThaler, JesseColorful Twisted Top Partners and Partnerium at the LHChep-phParticle Physics - PhenomenologyIn scenarios that stabilize the electroweak scale, the top quark is typically accompanied by partner particles. In this work, we demonstrate how extended stabilizing symmetries can yield scalar or fermionic top partners that transform as ordinary color triplets but carry exotic electric charges. We refer to these scenarios as “hypertwisted” since they involve modifications to hypercharge in the top sector. As proofs of principle, we construct two hypertwisted scenarios: a supersymmetric construction with spin-0 top partners, and a composite Higgs construction with spin-1/2 top partners. In both cases, the top partners are still phenomenologically compatible with the mass range motivated by weak-scale naturalness. The phenomenology of hypertwisted scenarios is diverse, since the lifetimes and decay modes of the top partners are model dependent. The novel coupling structure opens up search channels that do not typically arise in top-partner scenarios, such as pair production of top-plus-jet resonances. Furthermore, hypertwisted top partners are typically sufficiently long lived to form “top-partnerium” bound states that decay predominantly via annihilation, motivating searches for rare narrow resonances with diboson decay modes.In scenarios that stabilize the electroweak scale, the top quark is typically accompanied by partner particles. In this work, we demonstrate how extended stabilizing symmetries can yield scalar or fermionic top partners that transform as ordinary color triplets but carry exotic electric charges. We refer to these scenarios as "hypertwisted" since they involve modifications to hypercharge in the top sector. As proofs of principle, we construct two hypertwisted scenarios: a supersymmetric construction with spin-0 top partners, and a composite Higgs construction with spin-1/2 top partners. In both cases, the top partners are still phenomenologically compatible with the mass range motivated by weak-scale naturalness. The phenomenology of hypertwisted scenarios is diverse, since the lifetimes and decay modes of the top partners are model dependent. The novel coupling structure opens up search channels that do not typically arise in top-partner scenarios, such as pair production of top-plus-jet resonances. Furthermore, hypertwisted top partners are typically sufficiently long lived to form "top-partnerium" bound states that decay predominantly via annihilation, motivating searches for rare narrow resonances with diboson decay modes.arXiv:1704.03393MIT-CTP-4897CERN-TH-2017-073oai:cds.cern.ch:22594652017-04-11
spellingShingle hep-ph
Particle Physics - Phenomenology
Kats, Yevgeny
McCullough, Matthew
Perez, Gilad
Soreq, Yotam
Thaler, Jesse
Colorful Twisted Top Partners and Partnerium at the LHC
title Colorful Twisted Top Partners and Partnerium at the LHC
title_full Colorful Twisted Top Partners and Partnerium at the LHC
title_fullStr Colorful Twisted Top Partners and Partnerium at the LHC
title_full_unstemmed Colorful Twisted Top Partners and Partnerium at the LHC
title_short Colorful Twisted Top Partners and Partnerium at the LHC
title_sort colorful twisted top partners and partnerium at the lhc
topic hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1007/JHEP06(2017)126
http://cds.cern.ch/record/2259465
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