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Robustness of slow contraction to cosmic initial conditions

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arxiv 2006.04999 v2 pith:72TWWBDA submitted 2020-06-09 gr-qc astro-ph.COhep-th

classification gr-qcastro-ph.COhep-th
keywords initialconditionsnumericalcontractioncosmologicalresultsslowspatial
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We present numerical relativity simulations of cosmological scenarios in which the universe is smoothed and flattened by undergoing a phase of slow contraction and test their sensitivity to a wide range of initial conditions. Our numerical scheme enables the variation of all freely specifiable physical quantities that characterize the initial spatial hypersurface, such as the initial shear and spatial curvature contributions as well as the initial field and velocity distributions of the scalar that drives the cosmological evolution. In particular, we include initial conditions that are far outside the perturbative regime of the well-known attractor scaling solution. We complement our numerical results by analytically performing a complete dynamical systems analysis and show that the two approaches yield consistent results.

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  1. Effects of the ekpyrotic mechanism on inflationary phase in loop quantum cosmologies

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    In LQC and mLQC-I, tuned ekpyrotic-plus-inflation potentials can yield w>1 at the bounce and at least 60 e-folds of post-bounce inflation.

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