arXiv · gr-qc/9510008
Strong Energy Condition in $R + R^2$ Gravity
Abstract
In this paper, we study Raychaudhuri's equation in the background of $R + βR^2$ gravity with a phenomenological matter ($ρ\propto a(t)^{-n}$). We conclude that even though the Strong Energy Condition (S.E.C.) for Einstein's gravity, which guarantees singularity, is $n\geq 2$ for $ρ\propto a(t)^{-n}$, a perturbative analysis of Raychaudhuri's equation in the background of $R + βR^2$ gravity reveals that the big bang singularity may not be guaranteed for $n > 4$. We derive the following Strong Energy Conditions for $R + βR^2$ ($β\not= 0$): 1) For $k<0$ FRW metric, S.E.C. is ($0\leq n\leq 4$) i.e., $-ρ_n \leq p_n \leq {1\over 3}ρ_n$. 2) For $k=0$ FRW metric, S.E.C. is ( $1\leq n\leq 4$) i.e., $-{2\over 3}ρ_n \leq p_n \leq {1\over 3}ρ_n$. 3) For $k>0$ FRW metric, S.E.C. is ($2\leq n\leq 4$) i.e., $-{1\over 3}ρ_n \leq p_n \leq {1\over 3}ρ_n$.
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J. H. Kung. 1995-10-04. Strong Energy Condition in $R + R^2$ Gravity. https://doi.org/10.1103/physrevd.53.3017
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