Cargando…

Flavored dark matter beyond Minimal Flavor Violation

We study the interplay of flavor and dark matter phenomenology for models of flavored dark matter interacting with quarks. We allow an arbitrary flavor structure in the coupling of dark matter with quarks. This coupling is assumed to be the only new source of violation of the Standard Model flavor s...

Descripción completa

Detalles Bibliográficos
Autores principales: Agrawal, Prateek, Blanke, Monika, Gemmler, Katrin
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP10(2014)072
http://cds.cern.ch/record/1705242
_version_ 1780936461773701120
author Agrawal, Prateek
Blanke, Monika
Gemmler, Katrin
author_facet Agrawal, Prateek
Blanke, Monika
Gemmler, Katrin
author_sort Agrawal, Prateek
collection CERN
description We study the interplay of flavor and dark matter phenomenology for models of flavored dark matter interacting with quarks. We allow an arbitrary flavor structure in the coupling of dark matter with quarks. This coupling is assumed to be the only new source of violation of the Standard Model flavor symmetry extended by a $U(3)_\chi$ associated with the dark matter. We call this ansatz Dark Minimal Flavor Violation (DMFV) and highlight its various implications, including an unbroken discrete symmetry that can stabilize the dark matter. As an illustration we study a Dirac fermionic dark matter $\chi$ which transforms as triplet under $U(3)_\chi$, and is a singlet under the Standard Model. The dark matter couples to right-handed down-type quarks via a colored scalar mediator $\phi$ with a coupling $\lambda$. We identify a number of "flavor-safe" scenarios for the structure of $\lambda$ which are beyond Minimal Flavor Violation. For dark matter and collider phenomenology we focus on the well-motivated case of $b$-flavored dark matter. The combined flavor and dark matter constraints on the parameter space of $\lambda$ turn out to be interesting intersections of the individual ones. LHC constraints on simplified models of squarks and sbottoms can be adapted to our case, and monojet searches can be relevant if the spectrum is compressed.
id cern-1705242
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
record_format invenio
spelling cern-17052422022-08-10T20:04:48Zdoi:10.1007/JHEP10(2014)072http://cds.cern.ch/record/1705242engAgrawal, PrateekBlanke, MonikaGemmler, KatrinFlavored dark matter beyond Minimal Flavor ViolationParticle Physics - PhenomenologyWe study the interplay of flavor and dark matter phenomenology for models of flavored dark matter interacting with quarks. We allow an arbitrary flavor structure in the coupling of dark matter with quarks. This coupling is assumed to be the only new source of violation of the Standard Model flavor symmetry extended by a $U(3)_\chi$ associated with the dark matter. We call this ansatz Dark Minimal Flavor Violation (DMFV) and highlight its various implications, including an unbroken discrete symmetry that can stabilize the dark matter. As an illustration we study a Dirac fermionic dark matter $\chi$ which transforms as triplet under $U(3)_\chi$, and is a singlet under the Standard Model. The dark matter couples to right-handed down-type quarks via a colored scalar mediator $\phi$ with a coupling $\lambda$. We identify a number of "flavor-safe" scenarios for the structure of $\lambda$ which are beyond Minimal Flavor Violation. For dark matter and collider phenomenology we focus on the well-motivated case of $b$-flavored dark matter. The combined flavor and dark matter constraints on the parameter space of $\lambda$ turn out to be interesting intersections of the individual ones. LHC constraints on simplified models of squarks and sbottoms can be adapted to our case, and monojet searches can be relevant if the spectrum is compressed.We study the interplay of flavor and dark matter phenomenology for models of flavored dark matter interacting with quarks. We allow an arbitrary flavor structure in the coupling of dark matter with quarks. This coupling is assumed to be the only new source of violation of the Standard Model flavor symmetry extended by a U(3)$_{χ}$ associated with the dark matter. We call this ansatz Dark Minimal Flavor Violation (DMFV) and highlight its various implications, including an unbroken discrete symmetry that can stabilize the dark matter. As an illustration we study a Dirac fermionic dark matter χ which transforms as triplet under U(3)$_{χ}$ , and is a singlet under the Standard Model. The dark matter couples to right-handed down-type quarks via a colored scalar mediator ϕ with a coupling λ. We identify a number of “flavor-safe” scenarios for the structure of λ which are beyond Minimal Flavor Violation. For dark matter and collider phenomenology we focus on the well-motivated case of b-flavored dark matter. The combined flavor and dark matter constraints on the parameter space of λ turn out to be interesting intersections of the individual ones. LHC constraints on simplified models of squarks and sbottoms can be adapted to our case, and monojet searches can be relevant if the spectrum is compressed.We study the interplay of flavor and dark matter phenomenology for models of flavored dark matter interacting with quarks. We allow an arbitrary flavor structure in the coupling of dark matter with quarks. This coupling is assumed to be the only new source of violation of the Standard Model flavor symmetry extended by a $U(3)_\chi$ associated with the dark matter. We call this ansatz Dark Minimal Flavor Violation (DMFV) and highlight its various implications, including an unbroken discrete symmetry that can stabilize the dark matter. As an illustration we study a Dirac fermionic dark matter $\chi$ which transforms as triplet under $U(3)_\chi$, and is a singlet under the Standard Model. The dark matter couples to right-handed down-type quarks via a colored scalar mediator $\phi$ with a coupling $\lambda$. We identify a number of "flavor-safe" scenarios for the structure of $\lambda$ which are beyond Minimal Flavor Violation. For dark matter and collider phenomenology we focus on the well-motivated case of $b$-flavored dark matter. The combined flavor and dark matter constraints on the parameter space of $\lambda$ turn out to be interesting intersections of the individual ones. LHC constraints on simplified models of squarks and sbottoms can be adapted to our case, and monojet searches can be relevant if the spectrum is compressed.arXiv:1405.6709CERN-PH-TH-2014-098FERMILAB-PUB-14-141-TCERN-PH-TH-2014-098FERMILAB-PUB-14-141-Toai:cds.cern.ch:17052422014-05-26
spellingShingle Particle Physics - Phenomenology
Agrawal, Prateek
Blanke, Monika
Gemmler, Katrin
Flavored dark matter beyond Minimal Flavor Violation
title Flavored dark matter beyond Minimal Flavor Violation
title_full Flavored dark matter beyond Minimal Flavor Violation
title_fullStr Flavored dark matter beyond Minimal Flavor Violation
title_full_unstemmed Flavored dark matter beyond Minimal Flavor Violation
title_short Flavored dark matter beyond Minimal Flavor Violation
title_sort flavored dark matter beyond minimal flavor violation
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1007/JHEP10(2014)072
http://cds.cern.ch/record/1705242
work_keys_str_mv AT agrawalprateek flavoreddarkmatterbeyondminimalflavorviolation
AT blankemonika flavoreddarkmatterbeyondminimalflavorviolation
AT gemmlerkatrin flavoreddarkmatterbeyondminimalflavorviolation