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The capability of Cosmic Inflation to explain the latest Cosmic Microwave Background and Baryonic Acoustic Oscillation data is assessed by performing Bayesian model comparison within the landscape of nearly three-hundred models of single-field slow-roll inflation.
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J. Martin and C. Ringeval, Superimposed oscillations in the WMAP data? , Phys. Rev. D 69
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J. Choe, J.-O. Gong and E.D. Stewart, Second order general slow-roll power spectrum , JCAP 07
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J. Martin, C. Ringeval and V. Vennin, K-inflationary Power Spectra at Second Order , JCAP 1306
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S. Ávila, J. Martin and D. Steer, Superimposed Oscillations in Brane Inflation , JCAP 08
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J. Martin, C. Ringeval and V. Vennin, Encyclopædia Inflationaris , Phys. Dark Univ. 5-6
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V. Vennin, Horizon-Flow off-track for Inflation , Phys. Rev. D89
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J. Martin, C. Ringeval and V. Vennin, Observing Inflationary Reheating , Phys. Rev. Lett. 114
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W.J. Handley, M.P. Hobson and A.N. Lasenby, POLYCHORD: next-generation nested sampling , MNRAS 453
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K. Clough, R. Flauger and E.A. Lim, Robustness of Inflation to Large Tensor Perturbations , JCAP 05
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J. Martin, C. Ringeval and V. Vennin, “ASPIC: Accurate Slow-roll Predictions for Inflationary Cosmology.” Astrophysics Source Code Library, record ascl:1806.031, https://github.com/cosmicinflation/aspic , June, 2018
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H. Sugai, P.A.R. Ade, Y. Akiba, D. Alonso, K. Arnold, J. Aumont et al., Updated design of the cmb polarization experiment satellite litebird , Journal of Low Temperature Physics 199
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P. Auclair and C. Ringeval, Slow-roll inflation at N3LO , Phys. Rev. D 106
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2023
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