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SUSY soft breaking terms from string scenarios

The general SUSY soft breaking terms for a large class of phenomenologically relevant string scenarios (symmetric orbifolds) are given. They show a certain lack of universality, but not dangerous for flavor changing neutral currents. To get more quantitative results a specific SUSY breaking mechanis...

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Detalles Bibliográficos
Autores principales: de Carlos, Beatriz, Casas, J.Alberto, Munoz, Carlos
Lenguaje:eng
Publicado: 1993
Materias:
Acceso en línea:http://cds.cern.ch/record/251561
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author de Carlos, Beatriz
Casas, J.Alberto
Munoz, Carlos
author_facet de Carlos, Beatriz
Casas, J.Alberto
Munoz, Carlos
author_sort de Carlos, Beatriz
collection CERN
description The general SUSY soft breaking terms for a large class of phenomenologically relevant string scenarios (symmetric orbifolds) are given. They show a certain lack of universality, but not dangerous for flavor changing neutral currents. To get more quantitative results a specific SUSY breaking mechanism has to be considered, namely gaugino condensation in the hidden sector. Then, it turns out that squark and slepton masses tend to be much larger than scalar masses ($m_{\phi} > 10 M_a$), which probably is a quite general fact. Experimental bounds and the requirement of a successful electroweak breaking without fine tuning impose further restrictions on the soft breaking terms. As a consequence the gluino and chargino masses should be quite close to their present experimental limits, whereas squark and slepton masses should be much higher (> 1 TeV).
id cern-251561
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1993
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spelling cern-2515612020-07-23T02:47:34Zhttp://cds.cern.ch/record/251561engde Carlos, BeatrizCasas, J.AlbertoMunoz, CarlosSUSY soft breaking terms from string scenariosParticle Physics - TheoryThe general SUSY soft breaking terms for a large class of phenomenologically relevant string scenarios (symmetric orbifolds) are given. They show a certain lack of universality, but not dangerous for flavor changing neutral currents. To get more quantitative results a specific SUSY breaking mechanism has to be considered, namely gaugino condensation in the hidden sector. Then, it turns out that squark and slepton masses tend to be much larger than scalar masses ($m_{\phi} > 10 M_a$), which probably is a quite general fact. Experimental bounds and the requirement of a successful electroweak breaking without fine tuning impose further restrictions on the soft breaking terms. As a consequence the gluino and chargino masses should be quite close to their present experimental limits, whereas squark and slepton masses should be much higher (> 1 TeV).The general SUSY soft breaking terms for a large class of phenomenologically relevant string scenarios (symmetric orbifolds) are given. They show a certain lack of universality, but not dangerous for flavor changing neutral currents. To get more quantitative results a specific SUSY breaking mechanism has to be considered, namely gaugino condensation in the hidden sector. Then, it turns out that squark and slepton masses tend to be much larger than scalar masses ($m_{\phi} > 10 M_a$), which probably is a quite general fact. Experimental bounds and the requirement of a successful electroweak breaking without fine tuning impose further restrictions on the soft breaking terms. As a consequence the gluino and chargino masses should be quite close to their present experimental limits, whereas squark and slepton masses should be much higher (> 1 TeV).hep-ph/9306286CERN-TH-6922-93IEM-FT-73-93FTUAM-23-93CERN-TH-6922-93FTUAM-93-23IEM-FT-73oai:cds.cern.ch:2515611993
spellingShingle Particle Physics - Theory
de Carlos, Beatriz
Casas, J.Alberto
Munoz, Carlos
SUSY soft breaking terms from string scenarios
title SUSY soft breaking terms from string scenarios
title_full SUSY soft breaking terms from string scenarios
title_fullStr SUSY soft breaking terms from string scenarios
title_full_unstemmed SUSY soft breaking terms from string scenarios
title_short SUSY soft breaking terms from string scenarios
title_sort susy soft breaking terms from string scenarios
topic Particle Physics - Theory
url http://cds.cern.ch/record/251561
work_keys_str_mv AT decarlosbeatriz susysoftbreakingtermsfromstringscenarios
AT casasjalberto susysoftbreakingtermsfromstringscenarios
AT munozcarlos susysoftbreakingtermsfromstringscenarios