A shape dynamical approach to holographic renormalization

被引:0
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作者
Henrique Gomes
Sean Gryb
Tim Koslowski
Flavio Mercati
Lee Smolin
机构
[1] University of California at Davis,Institute for Theoretical Physics
[2] Utrecht University,Institute for Mathematics, Astrophysics and Particle Physics
[3] Radboud University Nijmegen,undefined
[4] University of New Brunswick,undefined
[5] Perimeter Institute for Theoretical Physics,undefined
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Gauge Symmetry; Conformal Field Theory; Semiclassical Limit; Hamiltonian Constraint; Holographic Renormalization;
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摘要
We provide a bottom-up argument to derive some known results from holographic renormalization using the classical bulk–bulk equivalence of General Relativity and Shape Dynamics, a theory with spatial conformal (Weyl) invariance. The purpose of this paper is twofold: (1) to advertise the simple classical mechanism, trading off gauge symmetries, that underlies the bulk–bulk equivalence of General Relativity and Shape Dynamics to readers interested in dualities of the type of AdS/conformal field theory (CFT); and (2) to highlight that this mechanism can be used to explain certain results of holographic renormalization, providing an alternative to the AdS/CFT conjecture for these cases. To make contact with the usual semiclassical AdS/CFT correspondence, we provide, in addition, a heuristic argument that makes it plausible that the classical equivalence between General Relativity and Shape Dynamics turns into a duality between radial evolution in gravity and the renormalization group flow of a CFT. We believe that Shape Dynamics provides a new perspective on gravity by giving conformal structure a primary role within the theory. It is hoped that this work provides the first steps toward understanding what this new perspective may be able to teach us about holographic dualities.
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