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No-Scale Scenario with Non-Universal Gaugino Masses

Phenomenological issues of no-scale structure of K\"{a}hler potential are re-examined, which arises in various approaches to supersymmetry breaking. When no-scale boundary conditions are given at the Grand Unified scale and universal gaugino masses are postulated, a bino mass is quite degenerat...

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Detalles Bibliográficos
Autores principales: Komine, S, Yamaguchi, M
Lenguaje:eng
Publicado: 2001
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.63.035005
http://cds.cern.ch/record/449489
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author Komine, S
Yamaguchi, M
author_facet Komine, S
Yamaguchi, M
author_sort Komine, S
collection CERN
description Phenomenological issues of no-scale structure of K\"{a}hler potential are re-examined, which arises in various approaches to supersymmetry breaking. When no-scale boundary conditions are given at the Grand Unified scale and universal gaugino masses are postulated, a bino mass is quite degenerate with right-handed slepton masses and the requirement that the lightest superparticle (LSP) be neutral supplemented with slepton searches at LEP200 severely constrains allowed mass regions of superparticles. The situation drastically changes if one moderately relaxes the assumption of the universal gaugino masses. After reviewing some interesting scenarios where non-universal gaugino masses arise, we show that the non-universality diminishes the otherwise severe constraint on the superparticle masses, and leads a variety of superparticle mass spectra: in particular the LSP can be a wino-like neutralino, a higgsino-like neutralino, or even a sneutrino, and also left-handed sleptons can be lighter than right-handed ones.
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spelling cern-4494892019-09-30T06:29:59Zdoi:10.1103/PhysRevD.63.035005http://cds.cern.ch/record/449489engKomine, SYamaguchi, MNo-Scale Scenario with Non-Universal Gaugino MassesParticle Physics - PhenomenologyPhenomenological issues of no-scale structure of K\"{a}hler potential are re-examined, which arises in various approaches to supersymmetry breaking. When no-scale boundary conditions are given at the Grand Unified scale and universal gaugino masses are postulated, a bino mass is quite degenerate with right-handed slepton masses and the requirement that the lightest superparticle (LSP) be neutral supplemented with slepton searches at LEP200 severely constrains allowed mass regions of superparticles. The situation drastically changes if one moderately relaxes the assumption of the universal gaugino masses. After reviewing some interesting scenarios where non-universal gaugino masses arise, we show that the non-universality diminishes the otherwise severe constraint on the superparticle masses, and leads a variety of superparticle mass spectra: in particular the LSP can be a wino-like neutralino, a higgsino-like neutralino, or even a sneutrino, and also left-handed sleptons can be lighter than right-handed ones.hep-ph/0007327TU-598oai:cds.cern.ch:4494892001
spellingShingle Particle Physics - Phenomenology
Komine, S
Yamaguchi, M
No-Scale Scenario with Non-Universal Gaugino Masses
title No-Scale Scenario with Non-Universal Gaugino Masses
title_full No-Scale Scenario with Non-Universal Gaugino Masses
title_fullStr No-Scale Scenario with Non-Universal Gaugino Masses
title_full_unstemmed No-Scale Scenario with Non-Universal Gaugino Masses
title_short No-Scale Scenario with Non-Universal Gaugino Masses
title_sort no-scale scenario with non-universal gaugino masses
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1103/PhysRevD.63.035005
http://cds.cern.ch/record/449489
work_keys_str_mv AT komines noscalescenariowithnonuniversalgauginomasses
AT yamaguchim noscalescenariowithnonuniversalgauginomasses