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arxiv: 0708.0411 · v2 · submitted 2007-08-02 · 🌌 astro-ph

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Energy conditions in f(R)-gravity

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classification 🌌 astro-ph
keywords energyconditionsgravityboundsparameterstheoriesweakalong
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In order to shed some light on the current discussion about f(R)-gravity theories we derive and discuss the bounds imposed by the energy conditions on a general f(R) functional form. The null and strong energy conditions in this framework are derived from the Raychaudhuri's equation along with the requirement that gravity is attractive, whereas the weak and dominant energy conditions are stated from a comparison with the energy conditions that can be obtained in a direct approach via an effective energy-momentum tensor for f(R)-gravity. As a concrete application of the energy conditions to locally homogeneous and isotropic f(R)-cosmology, the recent estimated values of the deceleration and jerk parameters are used to examine the bounds from the weak energy condition on the parameters of two families of f(R)-gravity theories.

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  1. Energy conditions of bouncing solutions in quadratic curvature gravity coupled with a scalar field

    gr-qc 2026-03 unverdicted novelty 4.0

    Bouncing solutions in quadratic curvature gravity with a scalar field satisfy null, weak, and dominant energy conditions but violate the strong one when using the scalar-field energy-momentum tensor, while all four co...