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      The pre-inflationary dynamics of loop quantum cosmology: Confronting quantum gravity with observations

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          Abstract

          Using techniques from loop quantum gravity, the standard theory of cosmological perturbations was recently generalized to encompass the Planck era. We now apply this framework to explore pre-inflationary dynamics. The framework enables us to isolate and resolve the true trans-Planckian difficulties, with interesting lessons both for theory and observations. Specifically, for a large class of initial conditions at the bounce, we are led to a self consistent extension of the inflationary paradigm over the 11 orders of magnitude in density and curvature, from the big bounce to the onset of slow roll. In addition, for a narrow window of initial conditions, there are departures from the standard paradigm, with novel effects ---such as a modification of the consistency relation between the ratio of the tensor to scalar power spectrum and the tensor spectral index, as well as a new source for non-Gaussianities--- which could extend the reach of cosmological observations to the deep Planck regime of the early universe.

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          Mathematical structure of loop quantum cosmology

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            Adiabatic regularization of the energy-momentum tensor of a quantized field in homogeneous spaces

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              Absence of Singularity in Loop Quantum Cosmology

              It is shown that the cosmological singularity in isotropic minisuperspaces is naturally removed by quantum geometry. Already at the kinematical level, this is indicated by the fact that the inverse scale factor is represented by a bounded operator even though the classical quantity diverges at the initial singularity. The full demonstation comes from an analysis of quantum dynamics. Because of quantum geometry, the quantum evolution occurs in discrete time steps and does not break down when the volume becomes zero. Instead, space-time can be extended to a branch preceding the classical singularity independently of the matter coupled to the model. For large volume the correct semiclassical behavior is obtained.
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                Author and article information

                Journal
                01 February 2013
                2013-04-08
                Article
                10.1088/0264-9381/30/8/085014
                1302.0254
                7d6e3077-5971-484c-b350-21d76470d375

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

                History
                Custom metadata
                Class. Quant. Grav. 30, 085014 (2013)
                64 pages, 15 figures. Published version
                gr-qc astro-ph.CO hep-ph hep-th

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