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      The inflationary bispectrum with curved field-space

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          Abstract

          We compute the covariant three-point function near horizon-crossing for a system of slowly-rolling scalar fields during an inflationary epoch, allowing for an arbitrary field-space metric. We show explicitly how to compute its subsequent evolution using a covariantized version of the separate universe or "delta-N" expansion, which must be augmented by terms measuring curvature of the field-space manifold, and give the nonlinear gauge transformation to the comoving curvature perturbation. Nonlinearities induced by the field-space curvature terms are a new and potentially significant source of non-Gaussianity. We show how inflationary models with non-minimal coupling to the spacetime Ricci scalar can be accommodated within this framework. This yields a simple toolkit allowing the bispectrum to be computed in models with non-negligible field-space curvature.

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          Quantum Contributions to Cosmological Correlations

          The ``in-in'' formalism is reviewed and extended, and applied to the calculation of higher-order Gaussian and non-Gaussian correlations in cosmology. Previous calculations of these correlations amounted to the evaluation of tree graphs in the in-in formalism; here we also consider loop graphs. It turns out that for some though not all theories, the contributions of loop graphs as well as tree graphs depend only on the behavior of the inflaton potential near the time of horizon exit. A sample one-loop calculation is presented.
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            A General Analytic Formula for the Spectral Index of the Density Perturbations produced during Inflation

            The standard calculation of the spectrum of density perturbations produced during inflation assumes that there is only one real dynamical degree of freedom during inflation. However, there is no reason to believe that this is actually the case. In this paper we derive general analytic formulae for the spectrum and spectral index of the density perturbations produced during inflation.
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              A more accurate analytic calculation of the spectrum of cosmological perturbations produced during inflation

              Formulae are derived for the spectra of scalar curvature perturbations and gravitational waves produced during inflation, special cases of which include power law inflation, natural inflation in the small angle approximation and inflation in the slow roll approximation.
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                Author and article information

                Journal
                29 August 2012
                Article
                10.1088/1475-7516/2012/11/060
                1208.6011
                44afc3e4-5c6a-439f-ab5d-7f5165289303

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

                History
                Custom metadata
                JCAP 1211 (2012) 060
                22 pages, plus appendix and references
                astro-ph.CO hep-th

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