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A Higher Dimensional Stationary Rotating Black Hole Must be Axisymmetric

2 Pith papers cite this work. Polarity classification is still indexing.

2 Pith papers citing it
abstract

A key result in the proof of black hole uniqueness in 4-dimensions is that a stationary black hole that is ``rotating''--i.e., is such that the stationary Killing field is not everywhere normal to the horizon--must be axisymmetric. The proof of this result in 4-dimensions relies on the fact that the orbits of the stationary Killing field on the horizon have the property that they must return to the same null geodesic generator of the horizon after a certain period, $P$. This latter property follows, in turn, from the fact that the cross-sections of the horizon are two-dimensional spheres. However, in spacetimes of dimension greater than 4, it is no longer true that the orbits of the stationary Killing field on the horizon must return to the same null geodesic generator. In this paper, we prove that, nevertheless, a higher dimensional stationary black hole that is rotating must be axisymmetric. No assumptions are made concerning the topology of the horizon cross-sections other than that they are compact. However, we assume that the horizon is non-degenerate and, as in the 4-dimensional proof, that the spacetime is analytic.

citation-role summary

background 1

citation-polarity summary

fields

gr-qc 1 hep-th 1

years

2026 1 2015 1

verdicts

UNVERDICTED 2

roles

background 1

polarities

background 1

representative citing papers

Superradiance -- the 2020 Edition

gr-qc · 2015-01-26 · unverdicted · novelty 4.0

Black-hole superradiance extracts energy via the ergoregion and can trigger instabilities with applications to dark matter, beyond-Standard-Model physics, and laboratory analogs.

citing papers explorer

Showing 2 of 2 citing papers.

  • Axions Create Singularities on Extremal Horizons hep-th · 2026-05-28 · unverdicted · none · ref 28 · internal anchor

    Axions cause singularities on the horizons of extremal rotating charged black holes for almost all axion mass and coupling values.

  • Superradiance -- the 2020 Edition gr-qc · 2015-01-26 · unverdicted · none · ref 297 · internal anchor

    Black-hole superradiance extracts energy via the ergoregion and can trigger instabilities with applications to dark matter, beyond-Standard-Model physics, and laboratory analogs.