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Hawking Radiation from a (4+n)-dimensional Black Hole: Exact Results for the Schwarzschild Phase

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arxiv hep-ph/0309054 v2 pith:L55WP6TS submitted 2003-09-05 hep-ph astro-phgr-qchep-th

Hawking Radiation from a (4+n)-dimensional Black Hole: Exact Results for the Schwarzschild Phase

classification hep-ph astro-phgr-qchep-th
keywords blackbraneradiationanalysisarbitrarycomputeddimensionalemission
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We start our analysis by deriving a master equation that describes the motion of a field with arbitrary spin $s$ on a 3-brane embedded in a non-rotating, uncharged (4+n)-dimensional black hole background. By numerical analysis, we derive exact results for the greybody factors and emission rates for scalars, fermions and gauge bosons emitted directly on the brane, for all energy regimes and for an arbitrary number $n$ of extra dimensions. The relative emissivities on the brane for different types of particles are computed and their dependence on the dimensionality of spacetime is demonstrated -- we therefore conclude that both the amount and the type of radiation emitted can be used for the determination of $n$ if the Hawking radiation from these black holes is observed. The emission of scalar modes in the bulk from the same black holes is also studied and the relative bulk-to-brane energy emissivity is accurately computed. We demonstrate that this quantity varies considerably with $n$ but always remains smaller than unity -- this provides firm support to earlier arguments made by Emparan, Horowitz and Myers.

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Cited by 2 Pith papers

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  2. Absorption cross section of a Schwarzschild black hole for a massive vector field

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    Numerical computation of absorption cross sections for massive Proca fields on Schwarzschild black holes, revealing mass-induced longitudinal modes and breaking of even-odd parity degeneracy in transmission spectra.