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SuSpect: a Fortran Code for the Supersymmetric and Higgs Particle Spectrum in the MSSM

We present the Fortran code SuSpect version 2.1, which calculates the Supersymmetric and Higgs particle spectrum in the Minimal Supersymmetric Standard Model (MSSM). The calculation can be performed in constrained models with universal boundary conditions at high scales such as the gravity (mSUGRA),...

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Detalles Bibliográficos
Autores principales: Djouadi, Abdelhak, Kneur, Jean-Loic, Moultaka, Gilbert
Lenguaje:eng
Publicado: 2002
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.cpc.2006.11.009
http://cds.cern.ch/record/592851
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author Djouadi, Abdelhak
Kneur, Jean-Loic
Moultaka, Gilbert
author_facet Djouadi, Abdelhak
Kneur, Jean-Loic
Moultaka, Gilbert
author_sort Djouadi, Abdelhak
collection CERN
description We present the Fortran code SuSpect version 2.1, which calculates the Supersymmetric and Higgs particle spectrum in the Minimal Supersymmetric Standard Model (MSSM). The calculation can be performed in constrained models with universal boundary conditions at high scales such as the gravity (mSUGRA), anomaly (AMSB) or gauge (GMSB) mediated breaking models, but also in the non-universal MSSM case with R-parity and CP conservation. Care has been taken to treat important features such as the renormalization group evolution of parameters between low and high energy scales, the consistent implementation of radiative electroweak symmetry breaking and the calculation of the physical masses of the Higgs bosons and supersymmetric particles taking into account the dominant radiative corrections. Some checks of important theoretical and experimental features, such as the absence of non desired minima, large fine-tuning in the electroweak symmetry breaking condition, as well as agreement with precision measurements can be performed. The program is user friendly, simple to use, self-contained and can easily be linked with other codes; it is rather fast and flexible, thus allowing scans of the parameter space with several possible options and choices for model assumptions and approximations.
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spelling cern-5928512023-03-12T05:59:21Zdoi:10.1016/j.cpc.2006.11.009http://cds.cern.ch/record/592851engDjouadi, AbdelhakKneur, Jean-LoicMoultaka, GilbertSuSpect: a Fortran Code for the Supersymmetric and Higgs Particle Spectrum in the MSSMParticle Physics - PhenomenologyWe present the Fortran code SuSpect version 2.1, which calculates the Supersymmetric and Higgs particle spectrum in the Minimal Supersymmetric Standard Model (MSSM). The calculation can be performed in constrained models with universal boundary conditions at high scales such as the gravity (mSUGRA), anomaly (AMSB) or gauge (GMSB) mediated breaking models, but also in the non-universal MSSM case with R-parity and CP conservation. Care has been taken to treat important features such as the renormalization group evolution of parameters between low and high energy scales, the consistent implementation of radiative electroweak symmetry breaking and the calculation of the physical masses of the Higgs bosons and supersymmetric particles taking into account the dominant radiative corrections. Some checks of important theoretical and experimental features, such as the absence of non desired minima, large fine-tuning in the electroweak symmetry breaking condition, as well as agreement with precision measurements can be performed. The program is user friendly, simple to use, self-contained and can easily be linked with other codes; it is rather fast and flexible, thus allowing scans of the parameter space with several possible options and choices for model assumptions and approximations.We present the Fortran code SuSpect version 2.3, which calculates the Supersymmetric and Higgs particle spectrum in the Minimal Supersymmetric Standard Model (MSSM). The calculation can be performed in constrained models with universal boundary conditions at high scales such as the gravity (mSUGRA), anomaly (AMSB) or gauge (GMSB) mediated breaking models, but also in the non-universal MSSM case with R-parity and CP conservation. Care has been taken to treat important features such as the renormalization group evolution of parameters between low and high energy scales, the consistent implementation of radiative electroweak symmetry breaking and the calculation of the physical masses of the Higgs bosons and supersymmetric particles taking into account the dominant radiative corrections. Some checks of important theoretical and experimental features, such as the absence of non desired minima, large fine-tuning in the electroweak symmetry breaking condition, as well as agreement with precision measurements can be performed. The program is user friendly, simple to use, self-contained and can easily be linked with other codes: it is rather fast and flexible, thus allowing scans of the parameter space with several possible options and choices for model assumptions and approximations.hep-ph/0211331PM-02-39CERN-TH-2002-325CERN-TH-2002-325PM-2002-39oai:cds.cern.ch:5928512002-11-21
spellingShingle Particle Physics - Phenomenology
Djouadi, Abdelhak
Kneur, Jean-Loic
Moultaka, Gilbert
SuSpect: a Fortran Code for the Supersymmetric and Higgs Particle Spectrum in the MSSM
title SuSpect: a Fortran Code for the Supersymmetric and Higgs Particle Spectrum in the MSSM
title_full SuSpect: a Fortran Code for the Supersymmetric and Higgs Particle Spectrum in the MSSM
title_fullStr SuSpect: a Fortran Code for the Supersymmetric and Higgs Particle Spectrum in the MSSM
title_full_unstemmed SuSpect: a Fortran Code for the Supersymmetric and Higgs Particle Spectrum in the MSSM
title_short SuSpect: a Fortran Code for the Supersymmetric and Higgs Particle Spectrum in the MSSM
title_sort suspect: a fortran code for the supersymmetric and higgs particle spectrum in the mssm
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/j.cpc.2006.11.009
http://cds.cern.ch/record/592851
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AT moultakagilbert suspectafortrancodeforthesupersymmetricandhiggsparticlespectruminthemssm