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R-parity Conservation via the Stueckelberg Mechanism: LHC and Dark Matter Signals

We investigate the connection between the conservation of R-parity in supersymmetry and the Stueckelberg mechanism for the mass generation of the B-L vector gauge boson. It is shown that with universal boundary conditions for soft terms of sfermions in each family at the high scale and with the Stue...

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Detalles Bibliográficos
Autores principales: Feldman, Daniel, Fileviez Perez, Pavel, Nath, Pran
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP01(2012)038
http://cds.cern.ch/record/1382488
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author Feldman, Daniel
Fileviez Perez, Pavel
Nath, Pran
author_facet Feldman, Daniel
Fileviez Perez, Pavel
Nath, Pran
author_sort Feldman, Daniel
collection CERN
description We investigate the connection between the conservation of R-parity in supersymmetry and the Stueckelberg mechanism for the mass generation of the B-L vector gauge boson. It is shown that with universal boundary conditions for soft terms of sfermions in each family at the high scale and with the Stueckelberg mechanism for generating mass for the B-L gauge boson present in the theory, electric charge conservation guarantees the conservation of R-parity in the minimal B-L extended supersymmetric standard model. We also discuss non-minimal extensions. This includes extensions where the gauge symmetries arise with an additional U(1)_{B-L} x U(1)_X, where U(1)_X is a hidden sector gauge group. In this case the presence of the additional U(1)_X allows for a Z' gauge boson mass with B-L interactions to lie in the sub-TeV region overcoming the multi-TeV LEP constraints. The possible tests of the models at colliders and in dark matter experiments are analyzed including signals of a low mass Z' resonance and the production of spin zero bosons and their decays into two photons. In this model two types of dark matter candidates emerge which are Majorana and Dirac particles. Predictions are made for a possible simultaneous observation of new physics events in dark matter experiments and at the LHC.
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institution Organización Europea para la Investigación Nuclear
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spelling cern-13824882023-02-16T03:53:36Zdoi:10.1007/JHEP01(2012)038http://cds.cern.ch/record/1382488engFeldman, DanielFileviez Perez, PavelNath, PranR-parity Conservation via the Stueckelberg Mechanism: LHC and Dark Matter SignalsParticle Physics - PhenomenologyWe investigate the connection between the conservation of R-parity in supersymmetry and the Stueckelberg mechanism for the mass generation of the B-L vector gauge boson. It is shown that with universal boundary conditions for soft terms of sfermions in each family at the high scale and with the Stueckelberg mechanism for generating mass for the B-L gauge boson present in the theory, electric charge conservation guarantees the conservation of R-parity in the minimal B-L extended supersymmetric standard model. We also discuss non-minimal extensions. This includes extensions where the gauge symmetries arise with an additional U(1)_{B-L} x U(1)_X, where U(1)_X is a hidden sector gauge group. In this case the presence of the additional U(1)_X allows for a Z' gauge boson mass with B-L interactions to lie in the sub-TeV region overcoming the multi-TeV LEP constraints. The possible tests of the models at colliders and in dark matter experiments are analyzed including signals of a low mass Z' resonance and the production of spin zero bosons and their decays into two photons. In this model two types of dark matter candidates emerge which are Majorana and Dirac particles. Predictions are made for a possible simultaneous observation of new physics events in dark matter experiments and at the LHC.We investigate the connection between the conservation of R-parity in supersymmetry and the Stueckelberg mechanism for the mass generation of the B-L vector gauge boson. It is shown that with universal boundary conditions for soft terms of sfermions in each family at the high scale and with the Stueckelberg mechanism for generating mass for the B-L gauge boson present in the theory, electric charge conservation guarantees the conservation of R-parity in the minimal B-L extended supersymmetric standard model. We also discuss non-minimal extensions. This includes extensions where the gauge symmetries arise with an additional U(1)_{B-L} x U(1)_X, where U(1)_X is a hidden sector gauge group. In this case the presence of the additional U(1)_X allows for a Z' gauge boson mass with B-L interactions to lie in the sub-TeV region overcoming the multi-TeV LEP constraints. The possible tests of the models at colliders and in dark matter experiments are analyzed including signals of a low mass Z' resonance and the production of spin zero bosons and their decays into two photons. In this model two types of dark matter candidates emerge which are Majorana and Dirac particles. Predictions are made for a possible simultaneous observation of new physics events in dark matter experiments and at the LHC.arXiv:1109.2901oai:cds.cern.ch:13824882011-09-15
spellingShingle Particle Physics - Phenomenology
Feldman, Daniel
Fileviez Perez, Pavel
Nath, Pran
R-parity Conservation via the Stueckelberg Mechanism: LHC and Dark Matter Signals
title R-parity Conservation via the Stueckelberg Mechanism: LHC and Dark Matter Signals
title_full R-parity Conservation via the Stueckelberg Mechanism: LHC and Dark Matter Signals
title_fullStr R-parity Conservation via the Stueckelberg Mechanism: LHC and Dark Matter Signals
title_full_unstemmed R-parity Conservation via the Stueckelberg Mechanism: LHC and Dark Matter Signals
title_short R-parity Conservation via the Stueckelberg Mechanism: LHC and Dark Matter Signals
title_sort r-parity conservation via the stueckelberg mechanism: lhc and dark matter signals
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1007/JHEP01(2012)038
http://cds.cern.ch/record/1382488
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AT fileviezperezpavel rparityconservationviathestueckelbergmechanismlhcanddarkmattersignals
AT nathpran rparityconservationviathestueckelbergmechanismlhcanddarkmattersignals