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Quasi-Normal Modes of Brane-Localised Standard Model Fields II: Kerr Black Holes

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arxiv gr-qc/0607048 v3 pith:LETOJMYQ submitted 2006-07-11 gr-qc hep-th

classification gr-qchep-th
keywords blackholefieldfieldsangularbackgroundbrane-localiseddimensionality
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abstract

This paper presents a comprehensive study of the fundamental quasinormal modes of all Standard Model fields propagating on a brane embedded in a higher-dimensional rotating black hole spacetime. The equations of motion for fields with spin $s=0, 1/2$ and 1 propagating in the induced-on-the-brane background are solved numerically, and the dependence of their QN spectra on the black hole angular momentum and dimensionality of spacetime is investigated. It is found that the brane-localised field perturbations are longer-lived when the higher-dimensional black hole rotates faster, while an increase in the number of transverse-to-the-brane dimensions reduces their lifetime. Finally, the quality factor $Q$, that determines the best oscillator among the different field perturbations, is investigated and found to depend on properties of both the particular field studied (spin, multipole numbers) and the gravitational background (dimensionality, black hole angular momentum number).

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Cited by 9 Pith papers

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

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    Quasinormal modes of massive scalars in CFM brane-world black holes split into two types, with modes disappearing at critical masses where real or imaginary frequency parts reach zero.

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    For non-minimal Einstein-Yang-Mills black holes, the fundamental quasinormal mode stays Schwarzschild-like but the first overtones deviate sharply, with the ℓ=0 second overtone's real frequency tending to zero as the ...

  4. Hawking Emission from Black Holes Evaporating toward Wormholes and the Accuracy of the WKB Approximation

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    Scalar perturbations of a split five-dimensional thick brane yield long-lived quasinormal modes and position-dependent echo waveforms: clean periodic echoes on a sub-brane and modulated echoes between sub-branes.

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