English

Higher Spin Black Holes with Soft Hair

High Energy Physics - Theory 2016-10-25 v1 General Relativity and Quantum Cosmology

Abstract

We construct a new set of boundary conditions for higher spin gravity, inspired by a recent "soft Heisenberg hair"-proposal for General Relativity on three-dimensional Anti-de Sitter. The asymptotic symmetry algebra consists of a set of affine u^(1)\hat u(1) current algebras. Its associated canonical charges generate higher spin soft hair. We focus first on the spin-3 case and then extend some of our main results to spin-NN, many of which resemble the spin-2 results: the generators of the asymptotic W3W_3 algebra naturally emerge from composite operators of the u^(1)\hat u(1) charges through a twisted Sugawara construction; our boundary conditions ensure regularity of the Euclidean solutions space independently of the values of the charges; solutions, which we call "higher spin black flowers", are stationary but not necessarily spherically symmetric. Finally, we derive the entropy of higher spin black flowers, and find that for the branch that is continuously connected to the BTZ black hole, it depends only on the affine purely gravitational zero modes. Using our map to WW-algebra currents we recover well-known expressions for higher spin entropy. We also address higher spin black flowers in the metric formalism and achieve full consistency with previous results.

Keywords

Cite

@article{arxiv.1607.05360,
  title  = {Higher Spin Black Holes with Soft Hair},
  author = {Daniel Grumiller and Alfredo Perez and Stefan Prohazka and David Tempo and Ricardo Troncoso},
  journal= {arXiv preprint arXiv:1607.05360},
  year   = {2016}
}

Comments

24 pages, no figures