Abstract

An exact time-dependent solution of a black hole is found in a conformally invariant gravity model on a warped Randall-Sundrum spacetime, by writing the metric . Here, represents the “un-physical” spacetime and ω the dilaton field, which will be treated on equal footing as any renormalizable scalar field. In the case of a five-dimensional warped spacetime, we thereafter write . The dilaton field can be used to describe the different notion the in-going and outside observers have of the Hawking radiation by using different conformal gauge freedom. The disagreement about the interior of the black hole is explained by the antipodal map of points on the horizon. The free parameters of the solution can be chosen in such a way that is singular-free and topologically regular, even for ω → 0 . It is remarkable that the 5D and 4D effective field equations for the metric components and dilaton fields can be written in general dimension n = 4,5. From the exact energy-momentum tensor in Eddington-Finkelstein coordinates, we are able to determine the gravitational wave contribution in the process of evaporation of the black hole. It is conjectured that, in context of quantization procedures in the vicinity of the horizon, unitarity problems only occur in the bulk at large extra-dimension scale. The subtraction point in an effective theory will be in the UV only in the bulk, because the use of a large extra dimension results in a fundamental Planck scale comparable with the electroweak scale.

Highlights

  • The physical scale is not determined by M Pl. In this manuscript we will apply the antipodal map on a spinning black hole spacetime in conformal dilaton gravity applied to a warped 5D spacetime

  • We investigated the conformal dilaton gravity model on a warped 5D spacetime, where the warp factor is interpreted as a dilaton field, to be treated as a renormalized quantum field

  • It is a promising route to tackle the problems arising in quantum gravity models, such as the loss of unitarity when one investigates the Hawking radiation, emitted during the final stage of a black hole

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Summary

A New Black Hole Solution in Conformal Dilaton Gravity on a Warped Spacetime

How to cite this paper: Slagter, R.J. (2021) A New Black Hole Solution in Conformal Dilaton Gravity on a Warped Spacetime. How to cite this paper: Slagter, R.J. (2021) A New Black Hole Solution in Conformal Dilaton Gravity on a Warped Spacetime. Received: September 30, 2021 Accepted: November 13, 2021 Published: November 16, 2021

Introduction
The Origin of the Antipodal Mapping
The “Classical” Hawking Effect and Its Problems
Conformal Map between Manifolds and the Antipodal Map
The 5D Warped Spacetime
Penrose Diagram
Related Issues of the New Black Hole Solution
The Surface Gravity and the Conformal Gauge
The Meaning of the Warped Spacetime
The Relation with the 3D Baňados-Teitelboim-Zanelli Black Hole
Metric Fluctuation and Hawking Radiation
Conclusions
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