English

From the BTZ black hole to JT gravity: geometrizing the island

High Energy Physics - Theory 2021-12-01 v4

Abstract

We study the evaporation of two-dimensional black holes in JT gravity from a three-dimensional point of view. A partial dimensional reduction of AdS3_3 in Poincar\'e coordinates leads to an extremal 2D black hole in JT gravity coupled to a 'bath': the holographic dual of the remainder of the 3D spacetime. Partially reducing the BTZ black hole gives us the finite temperature version. We compute the entropy of the radiation using geodesics in the three-dimensional spacetime. We then focus on the finite temperature case and describe the dynamics by introducing time-dependence into the parameter controlling the reduction. The energy of the black hole decreases linearly as we slowly move the dividing line between black hole and bath. Through a re-scaling of the BTZ parameters we map this to the more canonical picture of exponential evaporation. Finally, studying the entropy of the radiation over time leads to a geometric representation of the Page curve. The appearance of the island region is explained in a natural and intuitive fashion.

Keywords

Cite

@article{arxiv.2102.00922,
  title  = {From the BTZ black hole to JT gravity: geometrizing the island},
  author = {Evita Verheijden and Erik Verlinde},
  journal= {arXiv preprint arXiv:2102.00922},
  year   = {2021}
}

Comments

22 pages, 5 figures. v2: comments and references added, typos fixed; clarification of dynamics. v3: references added, typos fixed; topological piece of dilaton removed from formulas (results unchanged). v4: version as published in JHEP