Lessons in quantum gravity from quantum field theory
arXiv:1010.3270 · doi:10.1063/1.3531637
Abstract
This paper reviews advances in the understanding of quantum gravity based on field theory calculations in the AdS/CFT correspondence.
18 pages, Presented for the Proceedings of the Symposium on Gravitation and BEC's Phenomenology from the Fourth Mexican Meeting on Mathematical and Experimental Physics
References in corpus (10)
- N=6 superconformal Chern-Simons-matter theories, M2-branes and their gravity duals
- Building an AdS/CFT superconductor
- Theory of the Nernst effect near quantum phase transitions in condensed matter, and in dyonic black holes
- Giant Magnons
- Monte Carlo studies of supersymmetric matrix quantum mechanics with sixteen supercharges at finite temperature
- Black hole thermodynamics from simulations of lattice Yang-Mills theory
- Wilson Loops in Superconformal Chern-Simons Theory and Fundamental Strings in Anti-de Sitter Supergravity Dual
- Three-dimensional N=6 SCFT's and their membrane dynamics
- Schwarzschild radius from Monte Carlo calculation of the Wilson loop in supersymmetric matrix quantum mechanics
- Small AdS black holes from SYM