Constraints on U(1)Lμ−Lτ from LHC data

In this study, we apply LHC data to constrain the extension of the Standard Model by an anomaly–free U(1)Lμ−Lτ gauge group; this model contains a new gauge boson (Z′) and a scalar dark matter particle (ϕDM). We recast a large number of LHC analyses of multi–lepton final states by the ATLAS and CMS c...

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Main Authors: Manuel Drees, Meng Shi, Zhongyi Zhang
Format: Article
Language:English
Published: Elsevier 2019-04-01
Series:Physics Letters B
Online Access:http://www.sciencedirect.com/science/article/pii/S037026931930125X
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spelling doaj-4595ee700678417cb8f40a5596d276692020-11-24T20:44:29ZengElsevierPhysics Letters B0370-26932019-04-01791130136Constraints on U(1)Lμ−Lτ from LHC dataManuel Drees0Meng Shi1Zhongyi Zhang2Physikalisches Institut and Bethe Center for Theoretical Physics, Bonn University, 53115 Bonn, GermanyPhysikalisches Institut and Bethe Center for Theoretical Physics, Bonn University, 53115 Bonn, GermanyCorresponding author.; Physikalisches Institut and Bethe Center for Theoretical Physics, Bonn University, 53115 Bonn, GermanyIn this study, we apply LHC data to constrain the extension of the Standard Model by an anomaly–free U(1)Lμ−Lτ gauge group; this model contains a new gauge boson (Z′) and a scalar dark matter particle (ϕDM). We recast a large number of LHC analyses of multi–lepton final states by the ATLAS and CMS collaborations. We find that for 10GeV<mZ′<60 GeV the strongest constraint comes from a dedicated Z′ search in the 4μ final state by the CMS collaboration; for larger Z′ masses, searches for final states with three leptons plus missing ET are more sensitive. Searches for final states with two leptons and missing ET, which are sensitive to Z′ decays into dark matter particles, can only probe regions of parameter space that are excluded by searches in the 3 and 4 lepton channels. The combination of LHC data excludes values of Z′ mass and coupling constant that can explain the deficit in gμ−2 for 4GeV≤mZ′≤500 GeV. However, for much of this range the LHC bound is weaker than the bound that can be derived from searches for “trident” events in neutrino–nucleus scattering. Keywords: Dark matter, Beyond Standard Model, LHC, Multi-leptonhttp://www.sciencedirect.com/science/article/pii/S037026931930125X
collection DOAJ
language English
format Article
sources DOAJ
author Manuel Drees
Meng Shi
Zhongyi Zhang
spellingShingle Manuel Drees
Meng Shi
Zhongyi Zhang
Constraints on U(1)Lμ−Lτ from LHC data
Physics Letters B
author_facet Manuel Drees
Meng Shi
Zhongyi Zhang
author_sort Manuel Drees
title Constraints on U(1)Lμ−Lτ from LHC data
title_short Constraints on U(1)Lμ−Lτ from LHC data
title_full Constraints on U(1)Lμ−Lτ from LHC data
title_fullStr Constraints on U(1)Lμ−Lτ from LHC data
title_full_unstemmed Constraints on U(1)Lμ−Lτ from LHC data
title_sort constraints on u(1)lμ−lτ from lhc data
publisher Elsevier
series Physics Letters B
issn 0370-2693
publishDate 2019-04-01
description In this study, we apply LHC data to constrain the extension of the Standard Model by an anomaly–free U(1)Lμ−Lτ gauge group; this model contains a new gauge boson (Z′) and a scalar dark matter particle (ϕDM). We recast a large number of LHC analyses of multi–lepton final states by the ATLAS and CMS collaborations. We find that for 10GeV<mZ′<60 GeV the strongest constraint comes from a dedicated Z′ search in the 4μ final state by the CMS collaboration; for larger Z′ masses, searches for final states with three leptons plus missing ET are more sensitive. Searches for final states with two leptons and missing ET, which are sensitive to Z′ decays into dark matter particles, can only probe regions of parameter space that are excluded by searches in the 3 and 4 lepton channels. The combination of LHC data excludes values of Z′ mass and coupling constant that can explain the deficit in gμ−2 for 4GeV≤mZ′≤500 GeV. However, for much of this range the LHC bound is weaker than the bound that can be derived from searches for “trident” events in neutrino–nucleus scattering. Keywords: Dark matter, Beyond Standard Model, LHC, Multi-lepton
url http://www.sciencedirect.com/science/article/pii/S037026931930125X
work_keys_str_mv AT manueldrees constraintsonu1lmltfromlhcdata
AT mengshi constraintsonu1lmltfromlhcdata
AT zhongyizhang constraintsonu1lmltfromlhcdata
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