Scrambling time from local perturbations of the eternal BTZ black hole
arXiv:1503.08161 · doi:10.1007/JHEP08(2015)011
Abstract
We compute the mutual information between finite intervals in two non-compact 2d CFTs in the thermofield double formulation after one of them has been locally perturbed by a primary operator at some time in the large limit. We determine the time scale, called the scrambling time, at which the mutual information vanishes and the original entanglement between the thermofield double gets destroyed by the perturbation. We provide a holographic description in terms of a free falling particle in the eternal BTZ black hole that exactly matches our CFT calculations. Our results hold for any time . In particular, when the latter is large, they reproduce the bulk shock-wave propagation along the BTZ horizon description.
37 pages, 5 figures