F(G) gravity models based on the ordinary and entropy-corrected holographic dark energy models
M. R. Setare, B. Malakolkalami, Naser Mohammadipour
Abstract
M. R. Setare, B. Malakolkalami, Naser Mohammadipour
Abstract
The ordinary and entropy-corrected versions of the holographic dark energy models in the spatially flat Friedmann–Robertson–Walker universe are considered. Then the F(G) modified gravity models as a candidates of dark energy are reconstructed according to the ordinary and entropy-corrected versions of the holographic dark energy models. The EoS parameters corresponding to the F(G) gravity models are obtained. The validity phantom or quintessence models in this framework of the modified gravity are investigated.
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The ordinary and entropy-corrected versions of the holographic dark energy models in the spatially flat Friedmann–Robertson–Walker universe are considered. Then the F(G) modified gravity models as a candidates of dark energy are reconstructed according to the ordinary and entropy-corrected versions of the holographic dark energy models. The EoS parameters corresponding to the F(G) gravity models are obtained. The validity phantom or quintessence models in this framework of the modified gravity are investigated.
Key concepts: Physics, Dark energy, Quintessence, f(R) gravity, Entropy (arrow of time), Holography, Holographic principle, Shape of the universe