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Moduli stabilization in 5D gauged supergravity with universal hypermultiplet and boundary superpotentials

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arxiv 0709.3791 v1 pith:K3AEHLPH submitted 2007-09-24 hep-th hep-ph

Moduli stabilization in 5D gauged supergravity with universal hypermultiplet and boundary superpotentials

classification hep-th hep-ph
keywords effectivegaugedgauginghypermultipletmodelsmodulistabilizationsupergravity
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study a four-dimensional effective theory of the five-dimensional (5D) gauged supergravity with a universal hypermultiplet and perturbative superpotential terms at the orbifold fixed points. Among eight independent isometries of the scalar manifold, we focus on three directions for gauging by the graviphoton. The class of models we consider includes the 5D heterotic M-theory and the supersymmetric Randall-Sundrum model as special limits of the gauging parameters. We analyze the vacuum structure of such models, especially the nature of moduli stabilization, from the viewpoint of the effective theory. We also discuss the uplifting of supersymmetric anti-de Sitter vacua.

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  1. Why 4D? Spontaneous Dimensional Selection from Gauge Criticality

    hep-ph 2026-07 conditional novelty 7.0

    Gauge criticality of Yang–Mills, via racetrack confinement and 3D dynamical SUSY breaking, can stabilize radii so that a macroscopic 4D spacetime emerges without being put in by hand.