4.4 Article

Entropy Conservation of Linear Dilaton Black Holes in Quantum Corrected Hawking Radiation

Journal

INTERNATIONAL JOURNAL OF THEORETICAL PHYSICS
Volume 50, Issue 10, Pages 3212-3224

Publisher

SPRINGER/PLENUM PUBLISHERS
DOI: 10.1007/s10773-011-0824-9

Keywords

Information loss paradox; Entropy conservation; Parikh-Wilczek's tunneling method; Quantum gravity effect; Linear dilaton black hole

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It has been shown recently that information is lost in the Hawking radiation of the linear dilaton black holes in various theories when applying the tunneling formalism of Parikh and Wilczek without considering quantum gravity effects. In this paper, we recalculate the emission probability by taking into account the log-area correction to the Bekenstein-Hawking entropy and the statistical correlation between quanta emitted. The crucial role of the quantum gravity effects on the information leakage and black hole remnant is highlighted. The entropy conservation of the linear dilaton black holes is discussed in detail. We also model the remnant as an extreme linear dilaton black hole with a pointlike horizon in order to show that such a remnant cannot radiate and its temperature becomes zero. In summary, we show that the information can also leak out of the linear dilaton black holes together with preserving unitarity in quantum mechanics.

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