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arxiv: 1803.01887 · v1 · pith:E4ZMO342new · submitted 2018-03-05 · ✦ hep-th · astro-ph.CO· gr-qc

Realistic Compactification Models in Einstein-Gauss-Bonnet Gravity

classification ✦ hep-th astro-ph.COgr-qc
keywords compactificationlambdaoccursonlyresultstermalphacase
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We report the results of a study on the dynamical compactification of spatially flat cosmological models in Einstein-Gauss-Bonnet gravity. The analysis was performed in the arbitrary dimension in order to be more general. We consider both vacuum and $\Lambda$-term cases. Our results suggest that for vacuum case, realistic compactification into the Kasner (power law) regime occurs with any number of dimensions ($D$), while the compactification into the exponential solution occurs only for $D \geqslant 2$. For the $\Lambda$-term case only compactification into the exponential solution exists, and it only occurs for $D \geqslant 2$ as well. Our results, combined with the bounds on Gauss-Bonnet coupling and the $\Lambda$-term ($\alpha, \Lambda$, respectively) from other considerations, allow for the tightening of the existing constraints and forbid $\alpha < 0$.

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