Disentangling the gravity dual of Yang-Mills theory
arXiv:2304.08949 · doi:10.1007/JHEP12(2023)137
Abstract
A construction of a gravity dual to a physical gauge theory requires confronting data. We establish a proof-of-concept for precision holography, i.e., the explicit reconstruction of the dual background metric functions directly from the entanglement entropy (EE) of strip subregions that we extract from pure glue Yang-Mills theory discretized on a lattice. Our main focus is on a three-dimensional Euclidean SU(2) theory in the deconfining phase. Holographic EE suggests, and we find evidence for, that the scaling of the thermal entropy with temperature is to power 7/3 and that it approaches smoothly the critical point, consistent with black hole thermodynamics. In addition, we provide frugal results on the potential between quenched quarks by the computation of the Polyakov loop correlators on the lattice. Holographic arguments pique curiosity in the substratum of Debye screening at strong coupling.
59 pages, 28 figures, to be published in JHEP under the title "Progress in the lattice evaluation of entanglement entropy of three-dimensional Yang-Mills theories and holographic bulk reconstruction"
References in corpus (24)
- Holographic representation of local bulk operators
- Entanglement as a Probe of Confinement
- Deriving covariant holographic entanglement
- Constructing local bulk observables in interacting AdS/CFT
- Universality of corner entanglement in conformal field theories
- Static quark-antiquark potential in the quark-gluon plasma from lattice QCD
- Numerical study of entanglement entropy in SU(2) lattice gauge theory
- Holographic Holes and Differential Entropy
- The Polyakov Loop and its Relation to Static Quark Potentials and Free Energies
- Heavy Quark Potential at Finite Temperature Using the Holographic Correspondence
- Deep Learning and AdS/QCD
- Is entanglement a probe of confinement?
- Extracting Spacetimes using the AdS/CFT Conjecture: Part II
- Continuum limit of string formation in 3-d SU(2) LGT
- Numerical metric extraction in AdS/CFT
- Holographic cameras: an eye for the bulk
- Entanglement entropy from non-equilibrium Monte Carlo simulations
- Learning the black hole metric from holographic conductivity
- Static forces in d=2+1 SU(N) gauge theories
- Dual Geometry of Entanglement Entropy via Deep Learning
- Spatial entanglement in two dimensional QCD: Renyi and Ryu-Takayanagi entropies
- Entanglement Witnessing for Lattice Gauge Theories
- Defining entanglement without tensor factoring: a Euclidean hourglass prescription
- Holographic spacetime from lattice Yang-Mills theory
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- Inverse problem of correlation functions in holography
- The Algebraic Structure Underlying Pole-Skipping Points
- Holographic geometry/real-space entanglement correspondence and metric reconstruction
- An analytic approach for holographic entanglement entropy at (quantum) criticality