A general black string and its microscopics

Geoffrey Compère, Sophie de Buyl, Sean Stotyna, Amitabh Virmani

Research output: Contribution to journalArticlepeer-review

24 Citations (Scopus)

Abstract

Using G 2(2) dualities we construct the most general black string solution of minimal five-dimensional ungauged supergravity. The black string has five independent parameters, namely, the magnetic one-brane charge, smeared electric zero-brane charge, boost along the string direction, energy above the BPS bound, and rotation in the transverse space. In one extremal limit it reduces to the three parameter supersymmetric string of five-dimensional minimal supergravity; in another extremal limit it reduces to the three parameter non-supersymmetric non-rotating extremal string of five-dimensional minimal supergravity. It also admits an extremal limit when it has maximal rotation in the fourdimensional transverse space. The decoupling limit of our general black string is a BTZ black hole times a two sphere. The macroscopic entropy of the string is reproduced by the Maldacena-Strominger-Witten CFT in appropriate ranges of the parameters. When the pressureless condition is imposed, our string describes the infinite radius limit of the most general class of black rings of minimal supergravity. We discuss implications our solution has for extremal and non-extremal black rings of minimal supergravity.

Original languageEnglish
Article number133
Number of pages31
JournalThe Journal of high energy physics
Volume2010
Issue number11
DOIs
Publication statusPublished - 9 Dec 2010

Keywords

  • AdS-CFT correspondence
  • Black holes
  • Black holes in string theory
  • Global symmetries

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