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Matter around Kerr black holes in scalar-tensor theories: scalarization and superradiant instability

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arxiv 1305.6936 v2 pith:BGYL5JTE submitted 2013-05-29 gr-qc astro-ph.HEhep-phhep-th

Matter around Kerr black holes in scalar-tensor theories: scalarization and superradiant instability

classification gr-qc astro-ph.HEhep-phhep-th
keywords blackwheneffectiveholeholesinstabilitymassscalar
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In electrovacuum stationary, asymptotically flat black holes in scalar-tensor theories of gravity are described by the Kerr-Newman family of solutions, just as in general relativity. We show that there exist two mechanisms which can render Kerr black holes unstable when matter is present in the vicinity of the black hole, as this induces an effective mass for the scalar. The first mechanism is a tachyonic instability that appears when the effective mass squared is negative, triggering the development of scalar hair --- a black hole version of "spontaneous scalarization". The second instability is associated with superradiance and is present when the effective mass squared is positive and when the black hole spin exceeds a certain threshold. The second mechanism is also responsible for a resonant effect in the superradiant scattering of scalar waves, with amplification factors as large as 10^5 or more.

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