A model for fermionic dark matter addressing both the CDF MW and the (g − 2)μ anomalies

We explore a simple and renormalizable model which incorporates a new stable fermion that accounts for the dark matter in the universe and which, at the same time, provides an interpretation of two recent measurements that deviate from the expectation in the Standard Model: the muon anomalous magnet...

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Main Authors: Giorgio Arcadi, Abdelhak Djouadi
Format: Article
Language:English
Published: Frontiers Media S.A. 2023-03-01
Series:Frontiers in Physics
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fphy.2023.1143932/full
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author Giorgio Arcadi
Abdelhak Djouadi
Abdelhak Djouadi
author_facet Giorgio Arcadi
Abdelhak Djouadi
Abdelhak Djouadi
author_sort Giorgio Arcadi
collection DOAJ
description We explore a simple and renormalizable model which incorporates a new stable fermion that accounts for the dark matter in the universe and which, at the same time, provides an interpretation of two recent measurements that deviate from the expectation in the Standard Model: the muon anomalous magnetic moment and the mass of the W boson recently recorded by the CDF collaboration. The model has a fermionic sector that involves singlet and doublet fields, in which the lightest state is the DM and interacts mainly through the Higgs portal. Two realizations of such a possibility are considered: one in which the Higgs sector is minimal and another in which it is extended to contain two doublet fields.
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spelling doaj.art-d6d138371fd34646856e8d996ca77be82023-03-21T09:06:30ZengFrontiers Media S.A.Frontiers in Physics2296-424X2023-03-011110.3389/fphy.2023.11439321143932A model for fermionic dark matter addressing both the CDF MW and the (g − 2)μ anomaliesGiorgio Arcadi0Abdelhak Djouadi1Abdelhak Djouadi2Dipartimento di Scienze Matematiche ed Informatiche, Scienze Fisiche e della Terra, Università Degli Studi di Messina, Messina, ItalyCAFPE and Departamento de Física Teórica y del Cosmos, Universidad de Granada, Granada, SpainLaboratory of High Energy and Comp. Physics, Tallinn, EstoniaWe explore a simple and renormalizable model which incorporates a new stable fermion that accounts for the dark matter in the universe and which, at the same time, provides an interpretation of two recent measurements that deviate from the expectation in the Standard Model: the muon anomalous magnetic moment and the mass of the W boson recently recorded by the CDF collaboration. The model has a fermionic sector that involves singlet and doublet fields, in which the lightest state is the DM and interacts mainly through the Higgs portal. Two realizations of such a possibility are considered: one in which the Higgs sector is minimal and another in which it is extended to contain two doublet fields.https://www.frontiersin.org/articles/10.3389/fphy.2023.1143932/fulldark matter theorydark matter phenomenologybeyond the Standard Model of physicsdark matter experimentexperimental searches of new physics
spellingShingle Giorgio Arcadi
Abdelhak Djouadi
Abdelhak Djouadi
A model for fermionic dark matter addressing both the CDF MW and the (g − 2)μ anomalies
Frontiers in Physics
dark matter theory
dark matter phenomenology
beyond the Standard Model of physics
dark matter experiment
experimental searches of new physics
title A model for fermionic dark matter addressing both the CDF MW and the (g − 2)μ anomalies
title_full A model for fermionic dark matter addressing both the CDF MW and the (g − 2)μ anomalies
title_fullStr A model for fermionic dark matter addressing both the CDF MW and the (g − 2)μ anomalies
title_full_unstemmed A model for fermionic dark matter addressing both the CDF MW and the (g − 2)μ anomalies
title_short A model for fermionic dark matter addressing both the CDF MW and the (g − 2)μ anomalies
title_sort model for fermionic dark matter addressing both the cdf mw and the g 2 μ anomalies
topic dark matter theory
dark matter phenomenology
beyond the Standard Model of physics
dark matter experiment
experimental searches of new physics
url https://www.frontiersin.org/articles/10.3389/fphy.2023.1143932/full
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