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Mass–Angular-Momentum Inequality For Black Ring...
Journal article

Mass–Angular-Momentum Inequality For Black Ring Spacetimes

Abstract

The inequality m^{3}≥27π/4|J_{2}||J_{1}-J_{2}| relating total mass and angular momenta is established for (possibly dynamical) spacetimes admitting black holes of ring (S^{1}×S^{2}) topology. This inequality is shown to be sharp in the sense that it is saturated precisely for the extreme Pomeransky-Sen'kov black ring solutions. The physical significance of this inequality and its relation to new evidence of black ring instability, as well as the standard picture of gravitational collapse, are discussed.

Authors

Alaee A; Khuri M; Kunduri H

Journal

Physical Review Letters, Vol. 119, No. 7,

Publisher

American Physical Society (APS)

Publication Date

August 18, 2017

DOI

10.1103/physrevlett.119.071101

ISSN

0031-9007

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