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S-Channel Dark Matter Simplified Models and Unitarity

The ultraviolet structure of $s$-channel mediator dark matter simplified models at hadron colliders is considered. In terms of commonly studied $s$-channel mediator simplified models it is argued that at arbitrarily high energies the perturbative description of dark matter production in high energy...

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Detalles Bibliográficos
Autores principales: Englert, Christoph, McCullough, Matthew, Spannowsky, Michael
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.dark.2016.09.002
http://cds.cern.ch/record/2149185
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author Englert, Christoph
McCullough, Matthew
Spannowsky, Michael
author_facet Englert, Christoph
McCullough, Matthew
Spannowsky, Michael
author_sort Englert, Christoph
collection CERN
description The ultraviolet structure of $s$-channel mediator dark matter simplified models at hadron colliders is considered. In terms of commonly studied $s$-channel mediator simplified models it is argued that at arbitrarily high energies the perturbative description of dark matter production in high energy scattering at hadron colliders will break down in a number of cases. This is analogous to the well documented breakdown of an EFT description of dark matter collider production. With this in mind, to diagnose whether or not the use of simplified models at the LHC is valid, perturbative unitarity of the scattering amplitude in the processes relevant to LHC dark matter searches is studied. The results are as one would expect: at the LHC and future proton colliders the simplified model descriptions of dark matter production are in general valid. As a result of the general discussion, a simple new class of previously unconsidered `Fermiophobic Scalar' simplified models is proposed, in which a scalar mediator couples to electroweak vector bosons. The Fermiophobic simplified model is well motivated and exhibits interesting collider and direct detection phenomenology.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
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spelling cern-21491852022-03-31T02:16:28Zdoi:10.1016/j.dark.2016.09.002http://cds.cern.ch/record/2149185engEnglert, ChristophMcCullough, MatthewSpannowsky, MichaelS-Channel Dark Matter Simplified Models and UnitarityParticle Physics - PhenomenologyThe ultraviolet structure of $s$-channel mediator dark matter simplified models at hadron colliders is considered. In terms of commonly studied $s$-channel mediator simplified models it is argued that at arbitrarily high energies the perturbative description of dark matter production in high energy scattering at hadron colliders will break down in a number of cases. This is analogous to the well documented breakdown of an EFT description of dark matter collider production. With this in mind, to diagnose whether or not the use of simplified models at the LHC is valid, perturbative unitarity of the scattering amplitude in the processes relevant to LHC dark matter searches is studied. The results are as one would expect: at the LHC and future proton colliders the simplified model descriptions of dark matter production are in general valid. As a result of the general discussion, a simple new class of previously unconsidered `Fermiophobic Scalar' simplified models is proposed, in which a scalar mediator couples to electroweak vector bosons. The Fermiophobic simplified model is well motivated and exhibits interesting collider and direct detection phenomenology.The ultraviolet structure of s -channel mediator dark matter simplified models at hadron colliders is considered. In terms of commonly studied s -channel mediator simplified models it is argued that at arbitrarily high energies the perturbative description of dark matter production in high energy scattering can break down. This is analogous to the well documented breakdown of an EFT description of dark matter collider production. With this in mind, to diagnose whether or not the use of simplified models at the LHC is valid, perturbative unitarity of the scattering amplitude in the processes relevant to LHC dark matter searches is studied. The results are as one would expect: at the LHC and future proton colliders the simplified model descriptions of dark matter production are in general valid. As a result of the general discussion, a simple class of ‘Fermiophobic Scalar’ simplified models is proposed, in which a scalar mediator couples to electroweak vector bosons. The Fermiophobic simplified model is well motivated and exhibits interesting collider and direct detection phenomenology.The ultraviolet structure of $s$-channel mediator dark matter simplified models at hadron colliders is considered. In terms of commonly studied $s$-channel mediator simplified models it is argued that at arbitrarily high energies the perturbative description of dark matter production in high energy scattering at hadron colliders will break down in a number of cases. This is analogous to the well documented breakdown of an EFT description of dark matter collider production. With this in mind, to diagnose whether or not the use of simplified models at the LHC is valid, perturbative unitarity of the scattering amplitude in the processes relevant to LHC dark matter searches is studied. The results are as one would expect: at the LHC and future proton colliders the simplified model descriptions of dark matter production are in general valid. As a result of the general discussion, a simple new class of previously unconsidered `Fermiophobic Scalar' simplified models is proposed, in which a scalar mediator couples to electroweak vector bosons. The Fermiophobic simplified model is well motivated and exhibits interesting collider and direct detection phenomenology.arXiv:1604.07975DCPT-16-52IPPP-16-26CERN-TH-2016-094DCPT-16-52IPPP-16-26CERN-TH-2016-094oai:cds.cern.ch:21491852016-04-27
spellingShingle Particle Physics - Phenomenology
Englert, Christoph
McCullough, Matthew
Spannowsky, Michael
S-Channel Dark Matter Simplified Models and Unitarity
title S-Channel Dark Matter Simplified Models and Unitarity
title_full S-Channel Dark Matter Simplified Models and Unitarity
title_fullStr S-Channel Dark Matter Simplified Models and Unitarity
title_full_unstemmed S-Channel Dark Matter Simplified Models and Unitarity
title_short S-Channel Dark Matter Simplified Models and Unitarity
title_sort s-channel dark matter simplified models and unitarity
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/j.dark.2016.09.002
http://cds.cern.ch/record/2149185
work_keys_str_mv AT englertchristoph schanneldarkmattersimplifiedmodelsandunitarity
AT mcculloughmatthew schanneldarkmattersimplifiedmodelsandunitarity
AT spannowskymichael schanneldarkmattersimplifiedmodelsandunitarity