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The Implementation of the Renormalized Complex MSSM in FeynArts and FormCalc

We describe the implementation of the renormalized complex MSSM (cMSSM) in the diagram generator FeynArts and the calculational tool FormCalc. This extension allows to perform UV-finite one-loop calculations of cMSSM processes almost fully automatically. The Feynman rules for the cMSSM with countert...

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Autores principales: Fritzsche, T., Hahn, T., Heinemeyer, S., von der Pahlen, F., Rzehak, H., Schappacher, C.
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.cpc.2014.02.005
http://cds.cern.ch/record/1598988
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author Fritzsche, T.
Hahn, T.
Heinemeyer, S.
von der Pahlen, F.
Rzehak, H.
Schappacher, C.
author_facet Fritzsche, T.
Hahn, T.
Heinemeyer, S.
von der Pahlen, F.
Rzehak, H.
Schappacher, C.
author_sort Fritzsche, T.
collection CERN
description We describe the implementation of the renormalized complex MSSM (cMSSM) in the diagram generator FeynArts and the calculational tool FormCalc. This extension allows to perform UV-finite one-loop calculations of cMSSM processes almost fully automatically. The Feynman rules for the cMSSM with counterterms are available as a new model file for FeynArts. Also included are default definitions of the renormalization constants; this fixes the renormalization scheme. Beyond that all model parameters are generic, e.g. we do not impose any relations to restrict the number of input parameters. The model file has been tested extensively for several non-trivial decays and scattering reactions. Our renormalization scheme has been shown to give stable results over large parts of the cMSSM parameter space.
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spelling cern-15989882020-02-08T03:52:07Zdoi:10.1016/j.cpc.2014.02.005http://cds.cern.ch/record/1598988engFritzsche, T.Hahn, T.Heinemeyer, S.von der Pahlen, F.Rzehak, H.Schappacher, C.The Implementation of the Renormalized Complex MSSM in FeynArts and FormCalcParticle Physics - PhenomenologyWe describe the implementation of the renormalized complex MSSM (cMSSM) in the diagram generator FeynArts and the calculational tool FormCalc. This extension allows to perform UV-finite one-loop calculations of cMSSM processes almost fully automatically. The Feynman rules for the cMSSM with counterterms are available as a new model file for FeynArts. Also included are default definitions of the renormalization constants; this fixes the renormalization scheme. Beyond that all model parameters are generic, e.g. we do not impose any relations to restrict the number of input parameters. The model file has been tested extensively for several non-trivial decays and scattering reactions. Our renormalization scheme has been shown to give stable results over large parts of the cMSSM parameter space.We describe the implementation of the renormalized complex MSSM (cMSSM) in the diagram generator FeynArts and the calculational tool FormCalc. This extension allows to perform UV-finite one-loop calculations of cMSSM processes almost fully automatically. The Feynman rules for the cMSSM with counterterms are available as a new model file for FeynArts. Also included are default definitions of the renormalization constants; this fixes the renormalization scheme. Beyond that all model parameters are generic, e.g. we do not impose any relations to restrict the number of input parameters. The model file has been tested extensively for several non-trivial decays and scattering reactions. Our renormalization scheme has been shown to give stable results over large parts of the cMSSM parameter space.We describe the implementation of the renormalized complex MSSM (cMSSM) in the diagram generator FeynArts and the calculational tool FormCalc. This extension allows to perform UV-finite one-loop calculations of cMSSM processes almost fully automatically. The Feynman rules for the cMSSM with counterterms are available as a new model file for FeynArts. Also included are default definitions of the renormalization constants; this fixes the renormalization scheme. Beyond that all model parameters are generic, e.g. we do not impose any relations to restrict the number of input parameters. The model file has been tested extensively for several non-trivial decays and scattering reactions. Our renormalization scheme has been shown to give stable results over large parts of the cMSSM parameter space.CERN-PH-TH-2013-168MPP-2013-185arXiv:1309.1692CERN-PH-TH-2013-168MPP-2013-185oai:cds.cern.ch:15989882013-09-06
spellingShingle Particle Physics - Phenomenology
Fritzsche, T.
Hahn, T.
Heinemeyer, S.
von der Pahlen, F.
Rzehak, H.
Schappacher, C.
The Implementation of the Renormalized Complex MSSM in FeynArts and FormCalc
title The Implementation of the Renormalized Complex MSSM in FeynArts and FormCalc
title_full The Implementation of the Renormalized Complex MSSM in FeynArts and FormCalc
title_fullStr The Implementation of the Renormalized Complex MSSM in FeynArts and FormCalc
title_full_unstemmed The Implementation of the Renormalized Complex MSSM in FeynArts and FormCalc
title_short The Implementation of the Renormalized Complex MSSM in FeynArts and FormCalc
title_sort implementation of the renormalized complex mssm in feynarts and formcalc
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/j.cpc.2014.02.005
http://cds.cern.ch/record/1598988
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