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arXiv:1012.1995·v3·Cosmology and Nongalactic Astrophysics

First Observational Tests of Eternal Inflation

Stephen M. Feeney (UCL)🇬🇧 · Matthew C. Johnson (Perimeter Institute)🇨🇦 · Daniel J. Mortlock (Imperial College London)🇬🇧 · Hiranya V. Peiris (UCL)🇬🇧

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Abstract

The eternal inflation scenario predicts that our observable universe resides inside a single bubble embedded in a vast inflating multiverse. We present the first observational tests of eternal inflation, performing a search for cosmological signatures of collisions with other bubble universes in cosmic microwave background data from the WMAP satellite. We conclude that the WMAP 7-year data do not warrant augmenting LCDM with bubble collisions, constraining the average number of detectable bubble collisions on the full sky to be less than 1.6 at 68% CL. Data from the Planck satellite can be used to more definitively test the bubble collision hypothesis.

Comments: Companion to arXiv:1012.3667. 5 pages, 2 figures. v3: replaced with version accepted by PRL. Significant extensions to the Bayesian pipeline to do the full-sky non-Gaussian source detection problem (previously restricted to patches). Note that this has changed the normalization of evidence values reported previously, as full-sky priors are now employed, but the conclusions remain unchanged

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