Phenomenology of mixed modulus-anomaly mediation in fluxed string compactifications and brane models

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In some string compactifications, for instance the recently proposed KKLT set-up, light moduli are stabilized by nonperturbative effects at supersymmetric AdS vacuum which is lifted to a dS vacuum by supersymmetry breaking uplifting potential. In such models, soft supersymmetry breaking terms are determined by a specific mixed modulus-anomaly mediation in which the two mediations typically give comparable contributions to soft parameters. Similar pattern of soft terms can arise also in brane models to stabilize the radion by nonperturbative effects. We examine some phenomenological consequences of this mixed modulus-anomaly mediation, including the pattern of low energy sparticle spectrum and the possibility of electroweak symmetry breaking. It is noted that adding the anomaly-mediated contributions at M(GUT) amounts to replacing the messenger scale of the modulus mediation by a mirage messenger scale (m(3/2)/M(Pl))(alpha/2)M(GUT) where alpha = m(3/2)/[M(0) In(M(Pl)/m(3/2))] for M(0) denoting the modulus- mediated contribution to the gaugino mass at M(GUT). The minimal KKLT set-up predicts alpha = 1. As a consequence, for alpha = O(1), the model can lead to a highly distinctive pattern of sparticle masses at TeV scale, particularly when r = 2.
Publisher
INT SCHOOL ADVANCED STUDIES
Issue Date
2005-09
Language
English
Article Type
Article
Keywords

SOFT SUPERSYMMETRY-BREAKING; FINE-TUNING PRICE; SUPERSTRING THEORIES; PARTICLE PHYSICS; NATURAL SOLUTION; STANDARD MODEL; DARK-MATTER; MU-PROBLEM; SUPERGRAVITY; TERMS

Citation

JOURNAL OF HIGH ENERGY PHYSICS, v.2005, no.9, pp.039 - 039

ISSN
1126-6708
DOI
10.1088/1126-6708/2005/09/039
URI
http://hdl.handle.net/10203/91378
Appears in Collection
PH-Journal Papers(저널논문)
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