English

Winding Tachyons and Stringy Black Holes

High Energy Physics - Theory 2022-04-20 v2

Abstract

We study string theory on Rd×S1\mathbb{R}^d\times \mathbb{S}^1. For applications to thermodynamics, the circumference of the S1\mathbb{S}^1 is the inverse temperature, β\beta. We show that for d=6d=6, the low energy effective field theory at the inverse Hagedorn temperature, β=βH\beta=\beta_H, has a one parameter family of normalizable spherically symmetric solutions that break the winding symmetry around the S1\mathbb{S}^1. The resulting backgrounds exhibit an enhanced symmetry, with the symmetry breaking pattern SU(2)L×SU(2)RSU(2)diagonalSU(2)_L\times SU(2)_R\to SU(2)_{\rm diagonal}. The effective field theory analysis of these backgrounds is reliable for some range of parameters. More generally, they are described by a worldsheet CFT, which corresponds to the free theory on R6×S1\mathbb{R}^6\times \mathbb{S}^1 perturbed by a non-abelian Thirring deformation with an rr-dependent coupling. We propose that, in a certain scaling limit, string theory in these backgrounds is described by the SL(2,R)/U(1)SL(2,\mathbb{R})/U(1) cigar, and provides a thermodynamic description of weakly coupled highly excited fundamental strings. We also discuss the relation of these backgrounds to Euclidean black holes with near-Hagedorn Hawking temperature, and possible generalizations to other dd.

Keywords

Cite

@article{arxiv.2204.00012,
  title  = {Winding Tachyons and Stringy Black Holes},
  author = {Bruno Balthazar and Jinwei Chu and David Kutasov},
  journal= {arXiv preprint arXiv:2204.00012},
  year   = {2022}
}

Comments

33 pages, 8 figures

R2 v1 2026-06-24T10:33:50.548Z