Determining an asymptotically AdS spacetime from data on its conformal boundary
arXiv:1502.01622 · doi:10.1007/s10714-015-1974-5
Abstract
An outstanding question lying at the core of the AdS/CFT correspondence in string theory is the holographic prescription problem for Einstein metrics, which asserts that one can slightly perturb the conformal geometry at infinity of the anti-de Sitter space and still obtain an asymptotically anti-de Sitter spacetime that satisfies the Einstein equations with a negative cosmological constant. The purpose of this paper is to address this question by providing a precise quantitative statement of the real-time holographic principle for Einstein spacetimes, to outline its proof and to discuss its physical implications.
6 pages
References in corpus (1)
Cited by in corpus (5)
- Petrov Classification and holographic reconstruction of spacetime
- Fluctuations in a Cosmology with a Space-Like Singularity and their Gauge Theory Dual Description
- Globally hyperbolic spacetimes: slicings, boundaries and counterexamples
- The CST Bounce Universe model -- a parametric study
- Following the density perturbations through a bounce with AdS/CFT Correspondence