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Universal Low-Energy Dynamics for Rotating Black Holes

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arxiv hep-th/9702015 v3 pith:OAR57Q2V submitted 1997-02-03 hep-th

Universal Low-Energy Dynamics for Rotating Black Holes

classification hep-th
keywords theoryblackemissionstringbeenconformaleffectiveenergy
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Fundamental string theory has been used to show that low energy excitations of certain black holes are described by a two dimensional conformal field theory. This picture has been found to be extremely robust. In this paper it is argued that many essential features of the low energy effective theory can be inferred directly from a semiclassical analysis of the general Kerr-Newman solution of supersymmetric four-dimensional Einstein-Maxwell gravity, without using string theory. We consider the absorption and emission of scalars with orbital angular momentum, which provide a sensitive probe of the black hole. We find that the semiclassical emission rates -including superradiant emission and greybody factors - for such scalars agree in striking detail with those computed in the effective conformal field theory, in both four and five dimensions. Also the value of the quantum mass gap to the lowest-lying excitation of a charge-$Q$ black hole, $E_{gap}=1/8Q^3$ in Planck units, can be derived without knowledge of fundamental string theory.

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Forward citations

Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. The Large N Limit of Superconformal Field Theories and Supergravity

    hep-th 1997-11 unverdicted novelty 10.0

    The large N limit of superconformal field theories is dual to supergravity on Anti-de Sitter spacetimes.

  2. Monodromy, Hidden Conformal Symmetry and Soft Hair in Kerr-MOG Black Hole

    hep-th 2026-07 conditional novelty 4.0

    Kerr-MOG black holes are claimed to admit a 2D CFT dual with temperatures TL and TR and central charge 12J, reproducing the Bekenstein-Hawking entropy and scalar absorption cross section.