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(N+1)-dimensional Lorentzian evolving wormholes supported by polytropic matter

Published 15 Jul 2013 in gr-qc, astro-ph.CO, and hep-th | (1307.4122v1)

Abstract: In this paper we study $(N+1)$-dimensional evolving wormholes supported by energy satisfying a polytropic equation of state. The considered evolving wormhole models are described by a constant redshift function and generalizes the standard flat Friedmann-Robertson-Walker spacetime. The polytropic equation of state allows us to consider in $(3+1)$-dimensions generalizations of the phantom energy and the generalized Chaplygin gas sources.

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