Cargando…

Soft Masses in Strong Unification

We examine the infra-red structure of soft supersymmetry breaking masses of the squarks and sleptons in supersymmetric (SUSY) strong unification schemes where $\alpha_{GUT}\sim 0.2-1$. We show that combinations of soft masses approach fixed points which leads to very simple predictions for soft mass...

Descripción completa

Detalles Bibliográficos
Autores principales: King, S.F., Ross, Graham G.
Lenguaje:eng
Publicado: 1998
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0550-3213(98)00422-2
http://cds.cern.ch/record/350417
_version_ 1780892227383328768
author King, S.F.
Ross, Graham G.
author_facet King, S.F.
Ross, Graham G.
author_sort King, S.F.
collection CERN
description We examine the infra-red structure of soft supersymmetry breaking masses of the squarks and sleptons in supersymmetric (SUSY) strong unification schemes where $\alpha_{GUT}\sim 0.2-1$. We show that combinations of soft masses approach fixed points which leads to very simple predictions for soft masses at the intermediate scale. The assumption that the high energy gaugino mass $M_{1/2}$ dominates over the soft scalar masses leads to a strong suppression of flavour changing neutral currents, and a low energy SUSY spectrum which is simply predicted in terms of two parameters, namely $\alpha_{GUT}$ and $M_{1/2}$. Due to the quickly falling gauge couplings beneath the high energy scale, the low energy spectrum has a characteristic ``scalar dominated'' signature quite unlike the standard gaugino dominated MSSM where the right-handed sleptons are predicted to be rather light. We also examine the new sources of flavour changing expected in such models, and in particular show that the flavour violation coming from the D-term of a $U(1)_X$ gauged family symmetry may be reduced to an acceptable level.
id cern-350417
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1998
record_format invenio
spelling cern-3504172023-03-14T20:35:22Zdoi:10.1016/S0550-3213(98)00422-2http://cds.cern.ch/record/350417engKing, S.F.Ross, Graham G.Soft Masses in Strong UnificationParticle Physics - PhenomenologyWe examine the infra-red structure of soft supersymmetry breaking masses of the squarks and sleptons in supersymmetric (SUSY) strong unification schemes where $\alpha_{GUT}\sim 0.2-1$. We show that combinations of soft masses approach fixed points which leads to very simple predictions for soft masses at the intermediate scale. The assumption that the high energy gaugino mass $M_{1/2}$ dominates over the soft scalar masses leads to a strong suppression of flavour changing neutral currents, and a low energy SUSY spectrum which is simply predicted in terms of two parameters, namely $\alpha_{GUT}$ and $M_{1/2}$. Due to the quickly falling gauge couplings beneath the high energy scale, the low energy spectrum has a characteristic ``scalar dominated'' signature quite unlike the standard gaugino dominated MSSM where the right-handed sleptons are predicted to be rather light. We also examine the new sources of flavour changing expected in such models, and in particular show that the flavour violation coming from the D-term of a $U(1)_X$ gauged family symmetry may be reduced to an acceptable level.We examine the infra-red structure of soft supersymmetry breaking masses of the squarks and sleptons in supersymmetric (SUSY) strong unification schemes where $\alpha_{GUT}\sim 0.2-1$. We show that combinations of soft masses approach fixed points which leads to very simple predictions for soft masses at the intermediate scale. The assumption that the high energy gaugino mass $M_{1/2}$ dominates over the soft scalar masses leads to a strong suppression of flavour changing neutral currents, and a low energy SUSY spectrum which is simply predicted in terms of two parameters, namely $\alpha_{GUT}$ and $M_{1/2}$. Due to the quickly falling gauge couplings beneath the high energy scale, the low energy spectrum has a characteristic ``scalar dominated'' signature quite unlike the standard gaugino dominated MSSM where the right-handed sleptons are predicted to be rather light. We also examine the new sources of flavour changing expected in such models, and in particular show that the flavour violation coming from the D-term of a $U(1)_X$ gauged family symmetry may be reduced to an acceptable level.We examine the infra-red structure of soft supersymmetry breaking masses of the squarks and sleptons in supersymmetric (SUSY) strong unification schemes where α GUT ∼ 0.2–1. We show that combinations of soft masses approach fixed points which leads to very simple predictions for soft masses at the intermediate scale. The assumption that the high-energy gaugino mass M 1 2 dominates over the soft scalar masses leads to a strong suppression of flavour changing neutral currents, and a low-energy SUSY spectrum which is simply predicted in terms of two parameters, namely α GUT and M 1 2 . Due to the quickly falling gauge couplings beneath the high-energy scale, the low-energy spectrum has a characteristic “scalar dominated” signature quite unlike the standard gaugino dominated MSSM where the right-handed sleptons are predicted to be rather light. We also examine the new sources of flavour changing expected in such models, and in particular show that the flavour violation coming from the D -term of a U (1) x gauged family symmetry may be reduced to an acceptable level.hep-ph/9803463CERN-TH-98-027OUTP-98-22-PCERN-TH-98-027OUTP-98-22-Poai:cds.cern.ch:3504171998-03-26
spellingShingle Particle Physics - Phenomenology
King, S.F.
Ross, Graham G.
Soft Masses in Strong Unification
title Soft Masses in Strong Unification
title_full Soft Masses in Strong Unification
title_fullStr Soft Masses in Strong Unification
title_full_unstemmed Soft Masses in Strong Unification
title_short Soft Masses in Strong Unification
title_sort soft masses in strong unification
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/S0550-3213(98)00422-2
http://cds.cern.ch/record/350417
work_keys_str_mv AT kingsf softmassesinstrongunification
AT rossgrahamg softmassesinstrongunification