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Holographic RG from ERG: Locality and General Coordinate Invariance in the Bulk

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arxiv 2306.07442 v5 pith:RDMNF4S7 submitted 2023-06-12 hep-th

Holographic RG from ERG: Locality and General Coordinate Invariance in the Bulk

classification hep-th
keywords bulkscalarequationfieldinteractiontermactionconserved
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In earlier papers it was shown that the correct kinetic term for scalar, vector gauge field and the spin two field in $AdS_{D+1}$ space is obtained starting from the ERG equation for a $CFT_D$ perturbed by scalar composite, conserved vector current and conserved traceless energy momentum tensor respectively. In this paper interactions are studied and it is shown that a flipped version of Polchinski ERG equation that evolves towards the UV can be written down and is useful for making contact with the usual AdS/CFT prescriptions for correlation function calculations. The scalar-scalar-spin-2 interaction in the bulk is derived from the ERG equation in the large $N$ semiclasical approximation. It is also shown that after mapping to AdS the interaction is local on a scale of the bare cutoff rather than the moving cutoff (which would have corresponded to the AdS scale). The map to $AdS_{D+1}$ plays a crucial role in this locality. The local nature of the coupling ensures that this interaction term in the bulk action is obtained by gauge fixing a general coordinate invariant scalar kinetic term in the bulk action. A wave function renormalization of the scalar field is found to be required for a mutually consistent map of the two fields to $AdS_{D+1}$.

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Cited by 2 Pith papers

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

  1. $SO(1, d + 1)$ symmetry of the Exact RG equation

    hep-th 2026-01 conditional novelty 6.0

    The ERG evolution operator is SO(1,d+1)-invariant for any admissible cutoff, with cutoff-dependent conformal generators that reduce to standard AdS isometries for the special AdS-mapping cutoff.

  2. Entanglement inequalities, black holes and the architecture of typical states

    hep-th 2025-11 unverdicted novelty 6.0

    Typical states in large-N holographic CFTs exhibit UV and IR length scales set by energy and charges, producing factorization that isolates black holes via a corona of saturated entanglement wedges and extends ETH to ...