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Dark Energy and the Return of the Phoenix Universe

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arxiv 0812.3388 v1 pith:F2FBNEEY submitted 2008-12-17 hep-th astro-phgr-qc

classification hep-thastro-phgr-qc
keywords universedarkenergyphaseekpyroticradionscalaralong
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In cyclic universe models based on a single scalar field (e.g., the radion determining the distance between branes in M-theory), virtually the entire universe makes it through the ekpyrotic smoothing and flattening phase, bounces, and enters a new epoch of expansion and cooling. This stable evolution cannot occur, however, if scale-invariant curvature perturbations are produced by the entropic mechanism because it requires two scalar fields (e.g., the radion and the Calabi-Yau dilaton) evolving along an unstable classical trajectory. In fact, we show here that an overwhelming fraction of the universe fails to make it through the ekpyrotic phase; nevertheless, a sufficient volume survives and cycling continues forever provided the dark energy phase of the cycle lasts long enough, of order a trillion years. Two consequences are a new role for dark energy and a global structure of the universe radically different from that of eternal inflation.

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  1. A Safe Beginning for the Universe?

    hep-th 2019-09 conditional novelty 6.0 of 10

    In quadratic gravity, requiring a finite action for allowed universes rules out anisotropic and clumpy big-bang beginnings and forces accelerated expansion near zero volume.

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