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Simulating Holographic Conformal Field Theories on Hyperbolic Lattices (2404.03062v2)
Published 3 Apr 2024 in cond-mat.mes-hall, cond-mat.stat-mech, gr-qc, hep-th, math-ph, and math.MP
Abstract: We demonstrate how table-top settings combining hyperbolic lattices with nonlinear dynamics universally encode aspects of the bulk-boundary-correspondence between gravity in anti-de-Sitter (AdS) space and conformal field theory (CFT). Our concrete and broadly applicable holographic toy model simulates gravitational self-interactions in the bulk and features an emergent CFT with nontrivial correlations on the boundary. We measure the CFT data contained in the two- and three-point functions and clarify how a thermal CFT is simulated through an effective black hole geometry. As a concrete example, we propose and simulate an experimentally feasible protocol to measure the holographic CFT using electrical circuits.