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Low-scale warped extra dimension and its predilection for multiple top quarks

Within warped extra dimension models that explain flavor through geometry, flavor changing neutral current constraints generally force the Kaluza-Klein scale to be tens of TeV. This creates tension with a natural electroweak scale. On the other hand, a much lower scale compatible with precision elec...

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Autores principales: Jung, Sunghoon, Wells, James D.
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: JHEP 2010
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP11(2010)001
http://cds.cern.ch/record/1283555
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author Jung, Sunghoon
Wells, James D.
author_facet Jung, Sunghoon
Wells, James D.
author_sort Jung, Sunghoon
collection CERN
description Within warped extra dimension models that explain flavor through geometry, flavor changing neutral current constraints generally force the Kaluza-Klein scale to be tens of TeV. This creates tension with a natural electroweak scale. On the other hand, a much lower scale compatible with precision electroweak and flavor changing neutral current constraints is allowed if we decouple the Kaluza-Klein states of Standard Model gauge bosons from light fermions $c_{\rm light}\simeq c_b\simeq 0.5$ bulk mass parameters). The main signature for this approach is four top quark production via the Kaluza-Klein excitations' strong coupling to top quarks. We study single lepton, like-sign dilepton, and trilepton observables of four-top events at the Large Hadron Collider. The like-sign dilepton signature typically has the largest discovery potential for a strongly coupled right-handed top case ($M_{KK} \sim 2-2.5 TeV$), while single lepton is the better when the left-handed top couples most strongly ($M_{KK} \sim 2 TeV$). We also describe challenging lepton-jet collimation issues in the like-sign dilepton and trilepton channels. An alternative single lepton observable is considered which takes advantage of the many bottom quarks in the final state. Although searches of other particles may compete, we find that four top production via Kaluza-Klein gluons is most promising in a large region of this parameter space.
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spelling cern-12835552022-06-27T02:20:56Z doi:10.1007/JHEP11(2010)001 http://cds.cern.ch/record/1283555 eng Jung, Sunghoon Wells, James D. Low-scale warped extra dimension and its predilection for multiple top quarks Particle Physics - Phenomenology Within warped extra dimension models that explain flavor through geometry, flavor changing neutral current constraints generally force the Kaluza-Klein scale to be tens of TeV. This creates tension with a natural electroweak scale. On the other hand, a much lower scale compatible with precision electroweak and flavor changing neutral current constraints is allowed if we decouple the Kaluza-Klein states of Standard Model gauge bosons from light fermions $c_{\rm light}\simeq c_b\simeq 0.5$ bulk mass parameters). The main signature for this approach is four top quark production via the Kaluza-Klein excitations' strong coupling to top quarks. We study single lepton, like-sign dilepton, and trilepton observables of four-top events at the Large Hadron Collider. The like-sign dilepton signature typically has the largest discovery potential for a strongly coupled right-handed top case ($M_{KK} \sim 2-2.5 TeV$), while single lepton is the better when the left-handed top couples most strongly ($M_{KK} \sim 2 TeV$). We also describe challenging lepton-jet collimation issues in the like-sign dilepton and trilepton channels. An alternative single lepton observable is considered which takes advantage of the many bottom quarks in the final state. Although searches of other particles may compete, we find that four top production via Kaluza-Klein gluons is most promising in a large region of this parameter space. Within warped extra dimension models that explain flavor through geometry, flavor changing neutral current constraints generally force the Kaluza-Klein scale to be above many TeV. This creates tension with a natural electroweak scale. On the other hand, a much lower scale compatible with precision electroweak and flavor changing neutral current constraints is allowed if we decouple the Kaluza-Klein states of Standard Model gauge bosons from light fermions $c_{\rm light}\simeq c_b\simeq 0.5$ bulk mass parameters). The main signature for this approach is four top quark production via the Kaluza-Klein excitations' strong coupling to top quarks. We study single lepton, like-sign dilepton, and trilepton observables of four-top events at the Large Hadron Collider. The like-sign dilepton signature typically has the largest discovery potential for a strongly coupled right-handed top case ($M_{KK} \sim 2-2.5 \TeV$), while single lepton is the better when the left-handed top couples most strongly ($M_{KK} \sim 2 \TeV$). We also describe challenging lepton-jet collimation issues in the like-sign dilepton and trilepton channels. An alternative single lepton observable is considered which takes advantage of the many bottom quarks in the final state. Although searches of other particles may compete, we find that four top production via Kaluza-Klein gluons is most promising in a large region of this parameter space. info:eu-repo/grantAgreement/EC/FP7/237920 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/1283555 JHEP JHEP, (2010) pp. 001 2010-08-06
spellingShingle Particle Physics - Phenomenology
Jung, Sunghoon
Wells, James D.
Low-scale warped extra dimension and its predilection for multiple top quarks
title Low-scale warped extra dimension and its predilection for multiple top quarks
title_full Low-scale warped extra dimension and its predilection for multiple top quarks
title_fullStr Low-scale warped extra dimension and its predilection for multiple top quarks
title_full_unstemmed Low-scale warped extra dimension and its predilection for multiple top quarks
title_short Low-scale warped extra dimension and its predilection for multiple top quarks
title_sort low-scale warped extra dimension and its predilection for multiple top quarks
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1007/JHEP11(2010)001
http://cds.cern.ch/record/1283555
http://cds.cern.ch/record/1283555
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AT wellsjamesd lowscalewarpedextradimensionanditspredilectionformultipletopquarks