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Looking For TeV-Scale Strings and Extra-Dimensions

In contrast to the old heterotic string case, the (weakly coupled) type I brane framework allows to have all, part or none of the standard model gauge group factors propagating in large extra--dimensions of TeV$^{-1}$ size. We investigate the main experimental signatures of these possibilities, rela...

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Detalles Bibliográficos
Autores principales: Accomando, E., Antoniadis, Ignatios, Benakli, K.
Lenguaje:eng
Publicado: 1999
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0550-3213(00)00123-1
http://cds.cern.ch/record/411655
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author Accomando, E.
Antoniadis, Ignatios
Benakli, K.
author_facet Accomando, E.
Antoniadis, Ignatios
Benakli, K.
author_sort Accomando, E.
collection CERN
description In contrast to the old heterotic string case, the (weakly coupled) type I brane framework allows to have all, part or none of the standard model gauge group factors propagating in large extra--dimensions of TeV$^{-1}$ size. We investigate the main experimental signatures of these possibilities, related to the production of Kaluza-Klein excitations of gluons and electroweak gauge bosons. A discovery through direct observation of resonances is possible only for compactification scales below 6 TeV. However effects due to exchange of virtual Kaluza-Klein excitations could be observed for higher scales. We find that LHC can probe compactification scales as high as 20 TeV for excitations of gluons and 8-15 TeV for excitations of electroweak gauge bosons. Finally, in the case where no gauge boson feels the extra-dimension, we find that effective contact interactions due to massive string mode oscillations dominate those due to the exchange of Kaluza-Klein excitations of gravitons and could be used to obtain bounds on the string scale.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1999
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spelling cern-4116552023-03-14T20:36:12Zdoi:10.1016/S0550-3213(00)00123-1http://cds.cern.ch/record/411655engAccomando, E.Antoniadis, IgnatiosBenakli, K.Looking For TeV-Scale Strings and Extra-DimensionsParticle Physics - PhenomenologyIn contrast to the old heterotic string case, the (weakly coupled) type I brane framework allows to have all, part or none of the standard model gauge group factors propagating in large extra--dimensions of TeV$^{-1}$ size. We investigate the main experimental signatures of these possibilities, related to the production of Kaluza-Klein excitations of gluons and electroweak gauge bosons. A discovery through direct observation of resonances is possible only for compactification scales below 6 TeV. However effects due to exchange of virtual Kaluza-Klein excitations could be observed for higher scales. We find that LHC can probe compactification scales as high as 20 TeV for excitations of gluons and 8-15 TeV for excitations of electroweak gauge bosons. Finally, in the case where no gauge boson feels the extra-dimension, we find that effective contact interactions due to massive string mode oscillations dominate those due to the exchange of Kaluza-Klein excitations of gravitons and could be used to obtain bounds on the string scale.In contrast to the old heterotic string case, the (weakly coupled) type I brane framework allows to have all, part or none of the standard model gauge group factors propagating in large extra-dimensions of TeV −1 size. We investigate the main experimental signatures of these possibilities, related to the production of Kaluza–Klein excitations of gluons and electroweak gauge bosons. A discovery through direct observation of resonances is possible only for compactification scales below 6 TeV. However effects due to exchange of virtual Kaluza–Klein excitations could be observed for higher scales. We find that LHC can probe compactification scales as high as 20 TeV for excitations of gluons and 8–15 TeV for excitations of electroweak gauge bosons. Finally, in the case where no gauge boson feels the extra-dimension, we find that effective contact interactions due to massive string mode oscillations dominate those due to the exchange of Kaluza–Klein excitations of gravitons and could be used to obtain bounds on the string scale.In contrast to the old heterotic string case, the (weakly coupled) type I brane framework allows to have all, part or none of the standard model gauge group factors propagating in large extra--dimensions of TeV$^{-1}$ size. We investigate the main experimental signatures of these possibilities, related to the production of Kaluza-Klein excitations of gluons and electroweak gauge bosons. A discovery through direct observation of resonances is possible only for compactification scales below 6 TeV. However effects due to exchange of virtual Kaluza-Klein excitations could be observed for higher scales. We find that LHC can probe compactification scales as high as 20 TeV for excitations of gluons and 8-15 TeV for excitations of electroweak gauge bosons. Finally, in the case where no gauge boson feels the extra-dimension, we find that effective contact interactions due to massive string mode oscillations dominate those due to the exchange of Kaluza-Klein excitations of gravitons and could be used to obtain bounds on the string scale.hep-ph/9912287CPHT-S-751-1299CTP-TAMU-47-99CERN-TH-99-385CERN-TH-99-385CPTH-S-751CTP-TAMU-99-47oai:cds.cern.ch:4116551999-12-10
spellingShingle Particle Physics - Phenomenology
Accomando, E.
Antoniadis, Ignatios
Benakli, K.
Looking For TeV-Scale Strings and Extra-Dimensions
title Looking For TeV-Scale Strings and Extra-Dimensions
title_full Looking For TeV-Scale Strings and Extra-Dimensions
title_fullStr Looking For TeV-Scale Strings and Extra-Dimensions
title_full_unstemmed Looking For TeV-Scale Strings and Extra-Dimensions
title_short Looking For TeV-Scale Strings and Extra-Dimensions
title_sort looking for tev-scale strings and extra-dimensions
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/S0550-3213(00)00123-1
http://cds.cern.ch/record/411655
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