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Exact Rotating Magnetic Traversable Wormholes satisfying the Energy Conditions

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arxiv 1507.02348 v1 pith:GRQSMZQX submitted 2015-07-09 gr-qc

classification gr-qc
keywords conditionsenergyexactfieldmatterringrotatingsatisfying
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In this work we wonder if there is a way to generate a wormhole (WH) in nature using "normal" matter. In order to give a first answer to this question, we study a massless scalar field coupled to an electromagnetic one (dilatonic field) with an arbitrary coupling constant, as source of gravitation. We obtain an exact solution of the Einstein equations using this source that represents a magnetized rotating WH. This space-time has a naked ring singularity, probably untouchable as in \cite{Matos:2012gj}, but otherwise regular. The WH throat lies on the disc bounded by the ring singularity, which keeps the throat open without requiring exotic matter, that means, satisfying all the energy conditions. After analyzing the geodesic motion and the tidal forces we find that a test particle can go through the WH without troubles.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Einstein-Maxwell-Dilaton Wormholes that meet the Energy Conditions

    gr-qc 2025-02 reject novelty 4.0 of 10

    This paper presents two new exact rotating wormhole solutions and finds that the first family can satisfy the null energy condition with a dilatonic scalar field.

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