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Please use this identifier to cite or link to this item: http://hdl.handle.net/11129/1966

Title: Effect of the cosmological constant in the Hawking radiation of 3D charged dilaton black hole
Authors: Sakallı, İzzet
Keywords: general relativity
black holes
hawking radiation
quantum tunneling
Cosmological constant
Charged dilaton black hole
Radiation spectrum
Issue Date: 2012
Publisher: Astrophysics and Space Science, Springer
Citation: “Effect of the Cosmological Constant in the Hawking Radiation of 3D Charged Dilaton Black Hole”, Izzet Sakalli, Astrophys. Space Sci. 340, 317 (2012).
Series/Report no.: Springer;Astrophys. Space Sci. 340, 317 (2012)
Abstract: This paper deals with the semiclassical radiation spectrum of static and circularly symmetric 3D charged dilaton black holes with cosmological constant {\Lambda} in non-asymptotically flat spacetimes. We first review the 3D charged dilaton black holes which are solution to low-energy string action. The wave equation of a massless scalar field is shown to be exactly solvable in terms of hypergeometric functions. Thus, the radiation spectrum and its corresponding temperature are obtained, precisely. Computations at high frequency regime show that the radiation spectrum yields the Hawking temperature of the black hole with no charge. Unlike the chargeless case, the Hawking temperature of the charged dilaton black holes is derived from the radiation spectrum at the low frequencies. The utmost importance of the {\Lambda} in the latter result is highlighted.
Description: The file in this item is the post-print version of the article (author’s copy; author’s final manuscript, accepted for publication after peer-review process). Due to copyright restrictions, the access to the publisher version (published version) of this article is only available via subscription. You may click URI (with DOI: 10.1007/s10509-012-1053-2) and have access to the Publisher Version of this article through the publisher web site or online databases, if your Library or institution has subscription to the related journal or publication.
URI: http://dx.doi.org/10.1007/s10509-012-1053-2
http://hdl.handle.net/11129/1966
ISSN: 1572-946X (online)
0004-640X (print)
Appears in Collections:PHY – Journal Articles: Publisher & Author Versions (Post-Print Author Versions) – Physics

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