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Please use this identifier to cite or link to this item: http://hdl.handle.net/11129/2008

Title: Higher dimensional thin-shell wormholes in Einstein-Yang-Mills-Gauss-Bonnet gravity
Authors: Mazharimousavi, S. Habib
Halilsoy, Mustafa
Amirabi, Zahra
Keywords: gravity
general relativity
wormholes
thin-shell wormholes
Einstein-Yang-Mills-Gauss-Bonnet gravity
Issue Date: 2011
Publisher: Classical and Quantum Gravity, Institute of Physics (IOP) Publishing: Hybrid Open Access - Green Policies in RoMEO
Citation: S. Habib Mazharimousavi, M. Halilsoy and Z. Amirabi, Class. Quant. Grav. 28 (2011) 025004, arXiv:0082365 "Higher dimensional thin-shell wormholes in Einstein-Yang-Mills-Gauss-Bonnet gravity".
Series/Report no.: IOP SCIENCE;Class.Quant.Grav.28:025004,2011
Abstract: We present thin-shell wormhole solutions in Einstein-Yang-Mills-Gauss-Bonnet (EYMGB) theory in higher dimensions d\geq5. Exact black hole solutions are employed for this purpose where the radius of thin-shell lies outside the event horizon. For some reasons the cases d=5 and d>5 are treated separately. The surface energy-momentum of the thin-shell creates surface pressures to resist against collapse and rendering stable wormholes possible. We test the stability of the wormholes against spherical perturbations through a linear energy-pressure relation and plot stability regions. Apart from this restricted stability we investigate the possibility of normal (i.e. non-exotic) matter which satisfies the energy conditions. For negative values of the Gauss-Bonnet (GB) parameter we obtain such physical wormholes.
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: 10.1088/0264-9381/28/2/025004) 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/10.1088/0264-9381/28/2/025004
http://hdl.handle.net/11129/2008
ISSN: ISSN: 1361-6382 (online)
ISSN: 0264-9381 (print)
Appears in Collections:PHY – Journal Articles: Publisher & Author Versions (Post-Print Author Versions) – Physics

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