Cargando…

Global Analysis of Dark Matter Simplified Models with Leptophobic Spin-One Mediators using MasterCode

We report the results of a global analysis of dark matter simplified models (DMSMs) with leptophobic mediator particles of spin one, considering the cases of both vector and axial-vector interactions with dark matter (DM) particles and quarks. We require the DMSMs to provide all the cosmological DM...

Descripción completa

Detalles Bibliográficos
Autores principales: Bagnaschi, E., Costa, J.C., Sakurai, K., Borsato, M., Buchmueller, O., Roeck, A., Dolan, M.J., Ellis, J.R., Flächer, H., Hahn, K., Heinemeyer, S., Lucio, M., Santos, D.Martínez, Olive, K.A., Trifa, S., Weiglein, G.
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1140/epjc/s10052-019-7382-3
http://cds.cern.ch/record/2673325
_version_ 1780962493853597696
author Bagnaschi, E.
Costa, J.C.
Sakurai, K.
Borsato, M.
Buchmueller, O.
Roeck, A.
Dolan, M.J.
Ellis, J.R.
Flächer, H.
Hahn, K.
Heinemeyer, S.
Lucio, M.
Santos, D.Martínez
Olive, K.A.
Trifa, S.
Weiglein, G.
author_facet Bagnaschi, E.
Costa, J.C.
Sakurai, K.
Borsato, M.
Buchmueller, O.
Roeck, A.
Dolan, M.J.
Ellis, J.R.
Flächer, H.
Hahn, K.
Heinemeyer, S.
Lucio, M.
Santos, D.Martínez
Olive, K.A.
Trifa, S.
Weiglein, G.
author_sort Bagnaschi, E.
collection CERN
description We report the results of a global analysis of dark matter simplified models (DMSMs) with leptophobic mediator particles of spin one, considering the cases of both vector and axial-vector interactions with dark matter (DM) particles and quarks. We require the DMSMs to provide all the cosmological DM density indicated by Planck and other observations, and we impose the upper limits on spin-independent and -dependent scattering from direct DM search experiments. We also impose all relevant LHC constraints from searches for monojet events and measurements of the dijet mass spectrum. We model the likelihood functions for all the constraints and combine them within the MasterCode framework, and probe the full DMSM parameter spaces by scanning over the mediator and DM masses and couplings, not fixing any of the model parameters. We find, in general, two allowed regions of the parameter spaces: one in which the mediator couplings to Standard Model (SM) and DM particles may be comparable to those in the SM and the cosmological DM density is reached via resonant annihilation, and one in which the mediator couplings to quarks are $\lesssim \, 10^{-3}$ and DM annihilation is non-resonant. We find that the DM and mediator masses may well lie within the ranges accessible to LHC experiments. We also present predictions for spin-independent and -dependent DM scattering, and present specific results for ranges of the DM couplings that may be favoured in ultraviolet completions of the DMSMs.
id cern-2673325
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling cern-26733252021-11-12T07:21:15Zdoi:10.1140/epjc/s10052-019-7382-3http://cds.cern.ch/record/2673325engBagnaschi, E.Costa, J.C.Sakurai, K.Borsato, M.Buchmueller, O.Roeck, A.Dolan, M.J.Ellis, J.R.Flächer, H.Hahn, K.Heinemeyer, S.Lucio, M.Santos, D.MartínezOlive, K.A.Trifa, S.Weiglein, G.Global Analysis of Dark Matter Simplified Models with Leptophobic Spin-One Mediators using MasterCodehep-exParticle Physics - Experimentastro-ph.HEAstrophysics and Astronomyhep-phParticle Physics - PhenomenologyWe report the results of a global analysis of dark matter simplified models (DMSMs) with leptophobic mediator particles of spin one, considering the cases of both vector and axial-vector interactions with dark matter (DM) particles and quarks. We require the DMSMs to provide all the cosmological DM density indicated by Planck and other observations, and we impose the upper limits on spin-independent and -dependent scattering from direct DM search experiments. We also impose all relevant LHC constraints from searches for monojet events and measurements of the dijet mass spectrum. We model the likelihood functions for all the constraints and combine them within the MasterCode framework, and probe the full DMSM parameter spaces by scanning over the mediator and DM masses and couplings, not fixing any of the model parameters. We find, in general, two allowed regions of the parameter spaces: one in which the mediator couplings to Standard Model (SM) and DM particles may be comparable to those in the SM and the cosmological DM density is reached via resonant annihilation, and one in which the mediator couplings to quarks are $\lesssim \, 10^{-3}$ and DM annihilation is non-resonant. We find that the DM and mediator masses may well lie within the ranges accessible to LHC experiments. We also present predictions for spin-independent and -dependent DM scattering, and present specific results for ranges of the DM couplings that may be favoured in ultraviolet completions of the DMSMs.We report the results of a global analysis of dark matter simplified models (DMSMs) with leptophobic mediator particles of spin one, considering the cases of both vector and axial-vector interactions with dark matter (DM) particles and quarks. We require the DMSMs to provide all the cosmological DM density indicated by Planck and other observations, and we impose the upper limits on spin-independent and -dependent scattering from direct DM search experiments. We also impose all relevant LHC constraints from searches for monojet events and measurements of the dijet mass spectrum. We model the likelihood functions for all the constraints and combine them within the MasterCode framework, and probe the full DMSM parameter spaces by scanning over the mediator and DM masses and couplings, not fixing any of the model parameters. We find, in general, two allowed regions of the parameter spaces: one in which the mediator couplings to Standard Model (SM) and DM particles may be comparable to those in the SM and the cosmological DM density is reached via resonant annihilation, and one in which the mediator couplings to quarks are $\lesssim 10^{-3}$ and DM annihilation is non-resonant. We find that the DM and mediator masses may well lie within the ranges accessible to LHC experiments. We also present predictions for spin-independent and -dependent DM scattering, and present specific results for ranges of the DM couplings that may be favoured in ultraviolet completions of the DMSMs.arXiv:1905.00892KCL-PH-TH/2019-10CERN-TH-2019-007DESY-19-071PSI-PR-19-06FTPI-MINN-19/05UMN-TH-3814/19IFT-UAM/CSIC-18-120oai:cds.cern.ch:26733252019-05-02
spellingShingle hep-ex
Particle Physics - Experiment
astro-ph.HE
Astrophysics and Astronomy
hep-ph
Particle Physics - Phenomenology
Bagnaschi, E.
Costa, J.C.
Sakurai, K.
Borsato, M.
Buchmueller, O.
Roeck, A.
Dolan, M.J.
Ellis, J.R.
Flächer, H.
Hahn, K.
Heinemeyer, S.
Lucio, M.
Santos, D.Martínez
Olive, K.A.
Trifa, S.
Weiglein, G.
Global Analysis of Dark Matter Simplified Models with Leptophobic Spin-One Mediators using MasterCode
title Global Analysis of Dark Matter Simplified Models with Leptophobic Spin-One Mediators using MasterCode
title_full Global Analysis of Dark Matter Simplified Models with Leptophobic Spin-One Mediators using MasterCode
title_fullStr Global Analysis of Dark Matter Simplified Models with Leptophobic Spin-One Mediators using MasterCode
title_full_unstemmed Global Analysis of Dark Matter Simplified Models with Leptophobic Spin-One Mediators using MasterCode
title_short Global Analysis of Dark Matter Simplified Models with Leptophobic Spin-One Mediators using MasterCode
title_sort global analysis of dark matter simplified models with leptophobic spin-one mediators using mastercode
topic hep-ex
Particle Physics - Experiment
astro-ph.HE
Astrophysics and Astronomy
hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1140/epjc/s10052-019-7382-3
http://cds.cern.ch/record/2673325
work_keys_str_mv AT bagnaschie globalanalysisofdarkmattersimplifiedmodelswithleptophobicspinonemediatorsusingmastercode
AT costajc globalanalysisofdarkmattersimplifiedmodelswithleptophobicspinonemediatorsusingmastercode
AT sakuraik globalanalysisofdarkmattersimplifiedmodelswithleptophobicspinonemediatorsusingmastercode
AT borsatom globalanalysisofdarkmattersimplifiedmodelswithleptophobicspinonemediatorsusingmastercode
AT buchmuellero globalanalysisofdarkmattersimplifiedmodelswithleptophobicspinonemediatorsusingmastercode
AT roecka globalanalysisofdarkmattersimplifiedmodelswithleptophobicspinonemediatorsusingmastercode
AT dolanmj globalanalysisofdarkmattersimplifiedmodelswithleptophobicspinonemediatorsusingmastercode
AT ellisjr globalanalysisofdarkmattersimplifiedmodelswithleptophobicspinonemediatorsusingmastercode
AT flacherh globalanalysisofdarkmattersimplifiedmodelswithleptophobicspinonemediatorsusingmastercode
AT hahnk globalanalysisofdarkmattersimplifiedmodelswithleptophobicspinonemediatorsusingmastercode
AT heinemeyers globalanalysisofdarkmattersimplifiedmodelswithleptophobicspinonemediatorsusingmastercode
AT luciom globalanalysisofdarkmattersimplifiedmodelswithleptophobicspinonemediatorsusingmastercode
AT santosdmartinez globalanalysisofdarkmattersimplifiedmodelswithleptophobicspinonemediatorsusingmastercode
AT oliveka globalanalysisofdarkmattersimplifiedmodelswithleptophobicspinonemediatorsusingmastercode
AT trifas globalanalysisofdarkmattersimplifiedmodelswithleptophobicspinonemediatorsusingmastercode
AT weigleing globalanalysisofdarkmattersimplifiedmodelswithleptophobicspinonemediatorsusingmastercode