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November 30, 2025Physical review. D/Physical review. D.5 citationsOpen Access

Metric isometries, holography, and continuous symmetry operators

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MCMirjam CveticJHJonathan J. HeckmanMHMax Hübner

Key Points

  • D-branes arise from dualities in boundary conformal field theory, indicating links to bulk dynamics.
  • Boosts correlate symmetry operators and defects in the boundary conformal field theory.
  • Study analyzes codimension-2 configurations related to continuous symmetry operators in AdS/CFT.
  • Understanding these relations improves insight into string theory and quantum field theories.

Abstract

In the AdS/CFT correspondence, a topological symmetry operator of the boundary conformal field theory (CFT) is dual to a dynamical brane in the gravitational bulk. Said differently, this predicts a dynamical brane for every global symmetry of the boundary CFT. We analyze this correspondence for continuous symmetries which arise from a consistent truncation of isometries on the “internal” factor X of AdS × X . In the extra-dimensional geometry, these branes are associated with various metric singularities and do not arise from wrapped D-branes. Boosts relate configurations interpreted as topological symmetry operators and heavy defects in the CFT. From the perspective of the AdS factor, with gravity and bulk gauge fields, these are codimension-2 Gukov-Witten-like vortex configurations which are the gravity duals of 0-form symmetry operators. These effective branes come with an asymptotic tension and size which is also fully fixed by bulk dynamics. We use this higher-dimensional perspective to determine properties of the worldvolume theory for these branes. We also discuss how these considerations generalize to more general quantum field theories engineered via string theory which need not possess a semiclassical gravity dual.

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Cite This Study

Cvetic et al. (2025) studied this question.

synapsesocial.com/papers/692b9d831d383f2b2a37970fhttps://doi.org/10.1103/t68l-n5gg
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