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Dark matter, mu problem and neutrino mass with gauged R-symmetry

We show that the mu problem and the strong CP problem can be resolved in the context of the gauged U(1)_R symmetry, realizing an automatic Peccei-Quinn symmetry. In this scheme, right-handed neutrinos can be introduced to explain small Majorana or Dirac neutrino mass. The U(1)_R D-term mediated SUSY...

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Detalles Bibliográficos
Autores principales: Choi, Ki-Young, Chun, Eung Jin, Lee, Hyun Min
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.82.105028
http://cds.cern.ch/record/1245662
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author Choi, Ki-Young
Chun, Eung Jin
Lee, Hyun Min
author_facet Choi, Ki-Young
Chun, Eung Jin
Lee, Hyun Min
author_sort Choi, Ki-Young
collection CERN
description We show that the mu problem and the strong CP problem can be resolved in the context of the gauged U(1)_R symmetry, realizing an automatic Peccei-Quinn symmetry. In this scheme, right-handed neutrinos can be introduced to explain small Majorana or Dirac neutrino mass. The U(1)_R D-term mediated SUSY breaking, called the U(1)_R mediation, gives rise to a specific form of the flavor-conserving superpartner masses. For the given solution to the mu problem, electroweak symmetry breaking condition requires the superpartners of the Standard Model at low energy to be much heavier than the gravitino. Thus dark matter candidate can be either gravitino or right-handed sneutrino. In the Majorana neutrino case, only gravitino is a natural dark matter candidate. On the other hand, in the Dirac neutrino case, the right-handed sneutrino can be also a dark matter candidate as it gets mass only from SUSY breaking. We discuss the non-thermal production of our dark matter candidates from the late decay of stau and find that the constraints from the Big Bang Nucleosynthesis can be evaded for a TeV-scale stau mass.
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spelling cern-12456622019-09-30T06:29:59Zdoi:10.1103/PhysRevD.82.105028http://cds.cern.ch/record/1245662engChoi, Ki-YoungChun, Eung JinLee, Hyun MinDark matter, mu problem and neutrino mass with gauged R-symmetryParticle Physics - PhenomenologyWe show that the mu problem and the strong CP problem can be resolved in the context of the gauged U(1)_R symmetry, realizing an automatic Peccei-Quinn symmetry. In this scheme, right-handed neutrinos can be introduced to explain small Majorana or Dirac neutrino mass. The U(1)_R D-term mediated SUSY breaking, called the U(1)_R mediation, gives rise to a specific form of the flavor-conserving superpartner masses. For the given solution to the mu problem, electroweak symmetry breaking condition requires the superpartners of the Standard Model at low energy to be much heavier than the gravitino. Thus dark matter candidate can be either gravitino or right-handed sneutrino. In the Majorana neutrino case, only gravitino is a natural dark matter candidate. On the other hand, in the Dirac neutrino case, the right-handed sneutrino can be also a dark matter candidate as it gets mass only from SUSY breaking. We discuss the non-thermal production of our dark matter candidates from the late decay of stau and find that the constraints from the Big Bang Nucleosynthesis can be evaded for a TeV-scale stau mass.arXiv:1002.4791CERN-PH-TH-2010-038oai:cds.cern.ch:12456622010-02-26
spellingShingle Particle Physics - Phenomenology
Choi, Ki-Young
Chun, Eung Jin
Lee, Hyun Min
Dark matter, mu problem and neutrino mass with gauged R-symmetry
title Dark matter, mu problem and neutrino mass with gauged R-symmetry
title_full Dark matter, mu problem and neutrino mass with gauged R-symmetry
title_fullStr Dark matter, mu problem and neutrino mass with gauged R-symmetry
title_full_unstemmed Dark matter, mu problem and neutrino mass with gauged R-symmetry
title_short Dark matter, mu problem and neutrino mass with gauged R-symmetry
title_sort dark matter, mu problem and neutrino mass with gauged r-symmetry
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1103/PhysRevD.82.105028
http://cds.cern.ch/record/1245662
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AT chuneungjin darkmattermuproblemandneutrinomasswithgaugedrsymmetry
AT leehyunmin darkmattermuproblemandneutrinomasswithgaugedrsymmetry