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Dirty black holes: Quasinormal modes for "squeezed" horizons

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arxiv gr-qc/0310097 v2 pith:P425IRUP submitted 2003-10-20 gr-qc hep-th

classification gr-qchep-th
keywords horizonsblackholesquasinormalsqueezedconsidercontaindegenerate
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We consider the quasinormal modes for a class of black hole spacetimes that, informally speaking, contain a closely ``squeezed'' pair of horizons. (This scenario, where the relevant observer is presumed to be ``trapped'' between the horizons, is operationally distinct from near-extremal black holes with an external observer.) It is shown, by analytical means, that the spacing of the quasinormal frequencies equals the surface gravity at the squeezed horizons. Moreover, we can calculate the real part of these frequencies provided that the horizons are sufficiently close together (but not necessarily degenerate or even ``nearly degenerate''). The novelty of our analysis (which extends a model-specific treatment by Cardoso and Lemos) is that we consider ``dirty'' black holes; that is, the observable portion of the (static and spherically symmetric) spacetime is allowed to contain an arbitrary distribution of matter.

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Cited by 2 Pith papers

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    An external dynamical environment forms a resonant cavity with a black hole in dCS gravity that triggers Mathieu instability in the scalar sector, producing cascading amplification of gravitational waves via a delayed...

  2. pp-Waves and the Hidden Symmetries of Black Hole Quasinormal Modes

    hep-th 2024-12 conditional novelty 6.0 of 10

    Penrose limits onto the photon ring and past horizon of Schwarzschild produce pp-wave spacetimes whose isometries generate the evenly spaced overtones of eikonal and highly damped quasinormal modes.

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