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Large Dimensions and Small Curvatures from Supersymmetric Brane Back-reaction

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arxiv 1101.0152 v2 pith:EURZXNN5 submitted 2010-12-30 hep-th

classification hep-th
keywords braneback-reactioncouplingslargebranesbulkclassicalcoupling
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We compute the back-reaction of pairs of codimension-two branes within an explicit flux-stabilized compactification, to trace how its properties depend on the parameters that define the brane-bulk couplings. Both brane tension and magnetic couplings to the stabilizing flux play an important role in the resulting dynamics, with the magnetic coupling allowing some of the flux to be localized on the branes (thus changing the flux-quantization conditions). We find that back-reaction lifts the classical flat directions of the bulk supergravity, and we calculate both the scalar potential and changes to the extra-dimensional and on-brane geometries that result, as functions of the assumed brane couplings. When linearized about simple rugby-ball geometries the resulting solutions allow a systematic exploration of the system's response. Several of the systems we explore have remarkable properties. Among these are a propensity for the extra dimensions to stabilize at exponentially large sizes, providing a mechanism for generating extremely large volumes. In some circumstances the brane-dilaton coupling allows the bulk dilaton to adjust to suppress the on-brane curvature parametrically below the change in brane tension, potentially providing a mechanism for reducing the vacuum energy. We explore the stability of this suppression to quantum effects in the case where their strength is controlled by the value of the field along the classical flat direction, and find it can (but need not) be stable.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Higher co-dimension de Sitter branes

    hep-th 2025-06 conditional novelty 6.0 of 10

    A no-go theorem shows that thin co-dimension-two branes cannot support de Sitter vacua in compactified supergravity, and higher co-dimensions need negative tension.

  2. Response of Kaluza-Klein mass spectrum to deformations of rugby-ball compact space

    hep-th 2025-05 conditional novelty 6.0 of 10

    For deformed rugby-ball compactifications in 6D supergravity, the KK mass splitting between bosons and fermions is much smaller than the deviation from the supersymmetric mass eigenvalues.

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