U-Duality, D-Branes and Black Hole Emission Rates: Agreements and Disagreements
arXiv:hep-th/9702109 · doi:10.1103/PhysRevD.58.124025
Abstract
An expression for the spacetime absorption coefficient of a scalar field in a five dimensional, near extremal black hole background is derived, which has the same form as that presented by Maldacena and Strominger, but is valid over a larger, U-duality invariant region of parameter space and in general disagrees with the corresponding D-brane result. We develop an argument, based on D-brane thermodynamics, which specifies the range of parameters over which agreement should be expected. For neutral emission, the spacetime and D-brane results agree over this range. However, for charged emission, we find disagreement in the `Fat Black Hole' regime, in which charge is quantized in smaller units on the brane, than in the bulk of spacetime. We indicate a possible problem with the D-brane model in this regime. We also use the Born approximation to study the high frequency limit of the absorption coefficient and find that it approaches unity, for large black hole backgrounds, at frequencies still below the string scale, again in disagreement with D-brane results.
30 pages, harvmac; Clarification is added on the size of disagreement claimed; Remarks are added on treating the limit in which two charges are small
References in corpus (7)
- Universal Low-Energy Dynamics for Rotating Black Holes
- Greybody factors for rotating black holes in four dimensions
- A String Model of Black Hole Microstates
- Black Hole Greybody Factors and Absorption of Scalars by Effective Strings
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Cited by in corpus (11)
- General Rotating Black Holes in String Theory: Greybody Factors and Event Horizons
- Greybody factors for rotating black holes in four dimensions
- A String Model of Black Hole Microstates
- Absorption of photons and fermions by black holes in four dimensions
- Can the effective string see higher partial waves?
- Charged torus-like black holes as heat engines
- A Very Effective String Model?
- Dynamics of D-brane Black Holes
- Absorption Cross Section of Smeared D3-Brane on a Circle
- Black Hole Thermodynamics in Semi-Classical and Superstring Theory
- Black Hole Graybody Factor and Black Hole Entropy