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Thermal WIMPs and the Scale of New Physics: Global Fits of Dirac Dark Matter Effective Field Theories

We assess the status of a wide class of WIMP dark matter (DM) models in light of the latest experimental results using the global fitting framework GAMBIT. We perform a global analysis of effective field theory (EFT) operators describing the interactions between a gauge-singlet Dirac fermion and the...

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Autores principales: Athron, Peter, Kozar, Neal Avis, Balázs, Csaba, Beniwal, Ankit, Bloor, Sanjay, Bringmann, Torsten, Brod, Joachim, Chang, Christopher, Cornell, Jonathan M., Farmer, Ben, Fowlie, Andrew, Gonzalo, Tomás E., Handley, Will, Kahlhoefer, Felix, Kvellestad, Anders, Mahmoudi, Farvah, Prim, Markus T., Raklev, Are, Renk, Janina J., Scaffidi, Andre, Scott, Pat, Stöcker, Patrick, Vincent, Aaron C., White, Martin, Wild, Sebastian, Zupan, Jure
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:https://dx.doi.org/10.1140/epjc/s10052-021-09712-6
http://cds.cern.ch/record/2771846
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author Athron, Peter
Kozar, Neal Avis
Balázs, Csaba
Beniwal, Ankit
Bloor, Sanjay
Bringmann, Torsten
Brod, Joachim
Chang, Christopher
Cornell, Jonathan M.
Farmer, Ben
Fowlie, Andrew
Gonzalo, Tomás E.
Handley, Will
Kahlhoefer, Felix
Kvellestad, Anders
Mahmoudi, Farvah
Prim, Markus T.
Raklev, Are
Renk, Janina J.
Scaffidi, Andre
Scott, Pat
Stöcker, Patrick
Vincent, Aaron C.
White, Martin
Wild, Sebastian
Zupan, Jure
author_facet Athron, Peter
Kozar, Neal Avis
Balázs, Csaba
Beniwal, Ankit
Bloor, Sanjay
Bringmann, Torsten
Brod, Joachim
Chang, Christopher
Cornell, Jonathan M.
Farmer, Ben
Fowlie, Andrew
Gonzalo, Tomás E.
Handley, Will
Kahlhoefer, Felix
Kvellestad, Anders
Mahmoudi, Farvah
Prim, Markus T.
Raklev, Are
Renk, Janina J.
Scaffidi, Andre
Scott, Pat
Stöcker, Patrick
Vincent, Aaron C.
White, Martin
Wild, Sebastian
Zupan, Jure
author_sort Athron, Peter
collection CERN
description We assess the status of a wide class of WIMP dark matter (DM) models in light of the latest experimental results using the global fitting framework GAMBIT. We perform a global analysis of effective field theory (EFT) operators describing the interactions between a gauge-singlet Dirac fermion and the Standard Model quarks, the gluons and the photon. In this bottom-up approach, we simultaneously vary the coefficients of 14 such operators up to dimension 7, along with the DM mass, the scale of new physics and several nuisance parameters. Our likelihood functions include the latest data from Planck, direct and indirect detection experiments, and the LHC. For DM masses below 100 GeV, we find that it is impossible to satisfy all constraints simultaneously while maintaining EFT validity at LHC energies. For new physics scales around 1 TeV, our results are influenced by several small excesses in the LHC data and depend on the prescription that we adopt to ensure EFT validity. Furthermore, we find large regions of viable parameter space where the EFT is valid and the relic density can be reproduced, implying that WIMPs can still account for the DM of the universe while being consistent with the latest data.
id cern-2771846
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2021
record_format invenio
spelling cern-27718462023-06-22T04:00:44Zdoi:10.1140/epjc/s10052-021-09712-6http://cds.cern.ch/record/2771846engAthron, PeterKozar, Neal AvisBalázs, CsabaBeniwal, AnkitBloor, SanjayBringmann, TorstenBrod, JoachimChang, ChristopherCornell, Jonathan M.Farmer, BenFowlie, AndrewGonzalo, Tomás E.Handley, WillKahlhoefer, FelixKvellestad, AndersMahmoudi, FarvahPrim, Markus T.Raklev, AreRenk, Janina J.Scaffidi, AndreScott, PatStöcker, PatrickVincent, Aaron C.White, MartinWild, SebastianZupan, JureThermal WIMPs and the Scale of New Physics: Global Fits of Dirac Dark Matter Effective Field Theoriesastro-ph.COAstrophysics and Astronomyhep-phParticle Physics - PhenomenologyWe assess the status of a wide class of WIMP dark matter (DM) models in light of the latest experimental results using the global fitting framework GAMBIT. We perform a global analysis of effective field theory (EFT) operators describing the interactions between a gauge-singlet Dirac fermion and the Standard Model quarks, the gluons and the photon. In this bottom-up approach, we simultaneously vary the coefficients of 14 such operators up to dimension 7, along with the DM mass, the scale of new physics and several nuisance parameters. Our likelihood functions include the latest data from Planck, direct and indirect detection experiments, and the LHC. For DM masses below 100 GeV, we find that it is impossible to satisfy all constraints simultaneously while maintaining EFT validity at LHC energies. For new physics scales around 1 TeV, our results are influenced by several small excesses in the LHC data and depend on the prescription that we adopt to ensure EFT validity. Furthermore, we find large regions of viable parameter space where the EFT is valid and the relic density can be reproduced, implying that WIMPs can still account for the DM of the universe while being consistent with the latest data.We assess the status of a wide class of WIMP dark matter (DM) models in light of the latest experimental results using the global fitting framework $\textsf{GAMBIT}$. We perform a global analysis of effective field theory (EFT) operators describing the interactions between a gauge-singlet Dirac fermion and the Standard Model quarks, the gluons and the photon. In this bottom-up approach, we simultaneously vary the coefficients of 14 such operators up to dimension 7, along with the DM mass, the scale of new physics and several nuisance parameters. Our likelihood functions include the latest data from $\mathit{Planck}$, direct and indirect detection experiments, and the LHC. For DM masses below 100 GeV, we find that it is impossible to satisfy all constraints simultaneously while maintaining EFT validity at LHC energies. For new physics scales around 1 TeV, our results are influenced by several small excesses in the LHC data and depend on the prescription that we adopt to ensure EFT validity. Furthermore, we find large regions of viable parameter space where the EFT is valid and the relic density can be reproduced, implying that WIMPs can still account for the DM of the universe while being consistent with the latest data.arXiv:2106.02056ADP-21-9/T1156CERN-TH-2021-084CP3-21-15P3H-21-038TTK-21-19, gambit-physics-21TTK-21-19, gambit-physics-2021oai:cds.cern.ch:27718462021-06-03
spellingShingle astro-ph.CO
Astrophysics and Astronomy
hep-ph
Particle Physics - Phenomenology
Athron, Peter
Kozar, Neal Avis
Balázs, Csaba
Beniwal, Ankit
Bloor, Sanjay
Bringmann, Torsten
Brod, Joachim
Chang, Christopher
Cornell, Jonathan M.
Farmer, Ben
Fowlie, Andrew
Gonzalo, Tomás E.
Handley, Will
Kahlhoefer, Felix
Kvellestad, Anders
Mahmoudi, Farvah
Prim, Markus T.
Raklev, Are
Renk, Janina J.
Scaffidi, Andre
Scott, Pat
Stöcker, Patrick
Vincent, Aaron C.
White, Martin
Wild, Sebastian
Zupan, Jure
Thermal WIMPs and the Scale of New Physics: Global Fits of Dirac Dark Matter Effective Field Theories
title Thermal WIMPs and the Scale of New Physics: Global Fits of Dirac Dark Matter Effective Field Theories
title_full Thermal WIMPs and the Scale of New Physics: Global Fits of Dirac Dark Matter Effective Field Theories
title_fullStr Thermal WIMPs and the Scale of New Physics: Global Fits of Dirac Dark Matter Effective Field Theories
title_full_unstemmed Thermal WIMPs and the Scale of New Physics: Global Fits of Dirac Dark Matter Effective Field Theories
title_short Thermal WIMPs and the Scale of New Physics: Global Fits of Dirac Dark Matter Effective Field Theories
title_sort thermal wimps and the scale of new physics: global fits of dirac dark matter effective field theories
topic astro-ph.CO
Astrophysics and Astronomy
hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1140/epjc/s10052-021-09712-6
http://cds.cern.ch/record/2771846
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