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Spatial Curvature Falsifies Eternal Inflation

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arxiv 1202.5037 v1 pith:VJI4IUHO submitted 2012-02-22 astro-ph.CO gr-qchep-th

Spatial Curvature Falsifies Eternal Inflation

classification astro-ph.CO gr-qchep-th
keywords curvatureinflationeternalomegalocallyperturbationsspatialuniverse
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Inflation creates large-scale cosmological density perturbations that are characterized by an isotropic, homogeneous, and Gaussian random distribution about a locally flat background. Even in a flat universe, the spatial curvature measured within one Hubble volume receives contributions from long wavelength perturbations, and will not in general be zero. These same perturbations determine the Cosmic Microwave Background (CMB) temperature fluctuations, which are O(10^-5). Consequently, the low-l multipole moments in the CMB temperature map predict the value of the measured spatial curvature \Omega_k. On this basis we argue that a measurement of |\Omega_k| > 10^-4 would rule out slow-roll eternal inflation in our past with high confidence, while a measurement of \Omega_k < -10^-4 (which is positive curvature, a locally closed universe) rules out false-vacuum eternal inflation as well, at the same confidence level. In other words, negative curvature (a locally open universe) is consistent with false-vacuum eternal inflation but not with slow-roll eternal inflation, and positive curvature falsifies both. Near-future experiments will dramatically extend the sensitivity of \Omega_k measurements and constitute a sharp test of these predictions.

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