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Dark energy in conformal Killing gravity

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arxiv 2308.07634 v2 pith:T6F7JVIU submitted 2023-08-15 gr-qc

classification gr-qc
keywords energydarkomegatheoryconformalconstantcosmologicaldensity
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abstract

The Friedmann equation, augmented with an additional term that effectively takes on the role of dark energy, is demonstrated to be an exact solution to the recently proposed gravitational theory named "conformal Killing gravity." This theory does not explicitly incorporate dark energy. This finding suggests that there is no necessity to postulate the existence of dark energy as an independent physical entity. The dark energy derived from this theory is characterized by a specific equation of state parameter, denoted as $\omega$, which is uniquely determined to be $-5/3$. If this effective dark energy is present, typically around 5% of the total energy density at the present time, and under the assumption of density parameters for matter and the cosmological constant, $\Omega_{\rm m}\sim 0.25$ and $\Omega_\Lambda \sim 0.7$, respectively, the expansion of the universe at low redshifts ($z < 1.5$) can exceed expectations, while the expansion at $z > 1.5$ remains unchanged. This offers a potential solution to the Hubble tension problem. Alternatively, effective dark energy could be a dominant component in the present-day universe. In this scenario, there is also the potential to address the Hubble tension, and furthermore, it resolves the coincidence problem associated with the cosmological constant.

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Forward citations

Cited by 2 Pith papers

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

  1. Conformal Killing Gravity: New Constraints from DESI DR2 BAO datasets

    astro-ph.CO 2026-08 conditional novelty 4.0 of 10

    A one-parameter geometric dark energy model fits the newest DESI, Planck, ACT, and supernova data as well as or slightly better than the standard cosmological model, with a small negative extra parameter.

  2. A polynomial affine model of gravity: after ten years

    gr-qc 2024-12 conditional novelty 3.0 of 10

    A ten-year review of polynomial affine gravity, covering the most general diffeomorphism-invariant action, its field equations, cosmological solutions, and emergent metrics.

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