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Dark Energy from the Fifth Dimension

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arxiv 2206.14300 v1 pith:EHMQVZN5 submitted 2022-06-28 gr-qc hep-th

classification gr-qchep-th
keywords backgroundfive-dimensionalmanifoldphasespaceacceleratingbackgroundsbalance
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abstract

After extending the Regge-Teitelboim formulation of gravity to include the case where the background embedding space is not flat, we examine the dynamics of the four-dimensional $k=0$ Robertson-Walker (RW) manifold embedded in various five-dimensional backgrounds. We find that when the background is five-dimensional de Sitter space, the RW manifold undergoes a transition from a de-accelerating phase to an accelerating phase. This occurs before the inclusion of matter, radiation or cosmological constant sources, and thus does not require a balance of different components. We obtain a reasonable two-parameter fit of this model to the Hubble parameter data.

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Cited by 1 Pith paper

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  1. Updated constraints on Regge-Teitelboim gravity

    astro-ph.CO 2025-06 conditional novelty 4.0 of 10

    Planck and low-redshift data constrain the Stern-Xu Regge-Teitelboim extra acceleration component to Ω_RT < 0.006 at 95% confidence, making the model observationally indistinguishable from ΛCDM.

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