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Godel Type Metrics in Einstein-Aether Theory II: Nonflat Background in Arbitrary Dimensions

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arxiv 1512.02028 v2 pith:QG3CX3LS submitted 2015-12-07 gr-qc hep-th

classification gr-qchep-th
keywords theorydimensionseinstein-aetherequationsmetricsbackgrounddel-typedimensional
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abstract

It was previously proved that the G\"{o}del-type metrics with flat three-dimensional background metric solve exactly the field equations of the Einstein-Aether theory in four dimensions. We generalize this result by showing that the stationary G\"{o}del-type metrics with nonflat background in $D$ dimensions solve exactly the field equations of the Einstein-Aether theory. The reduced field equations are the $(D-1)$-dimensional Euclidean Ricci-flat and the $(D-1)$-dimensional source-free Maxwell equations, and the parameters of the theory are left free except $c_{1}-c_{3}=1$. We give a method to produce exact solutions of the Einstein-Aether theory from the G\"{o}del-type metrics in $D$ dimensions. By using this method, we present explicit exact solutions to the theory by considering the particular cases: ($D-1$)-dimensional Euclidean flat, conformally flat, and Tangherlini backgrounds.

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  1. Hodge Dual Gauge Symmetry in Minimal Einstein-Aether Theory

    gr-qc 2025-04 conditional novelty 5.0 of 10

    The minimal Einstein-aether vector field is the Hodge dual of a 3-form gauge field, making the two theories equivalent and showing that divergence-free aether fields are physically trivial.

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