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arXiv:1702.08311·v1·High Energy Physics — Theory

Inflation in higher-dimensional Space-times

Santiago Pajón Otero🇪🇸 · Francisco G. Pedro🇪🇸 · Clemens Wieck🇪🇸

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Abstract

We generalise Starobinsky's model of inflation to space-times with dimensions, where dimensions are compactified on a suitable manifold. The -dimensional action features Einstein-Hilbert gravity, a higher-order curvature term, a cosmological constant, and potential contributions from fluxes in the compact dimensions. The existence of a stable flat direction in the four-dimensional EFT implies that the power of space-time curvature, , and the rank of the compact space fluxes, , are constrained via . Whenever these constraints are satisfied, a consistent single-field inflation model can be built into this setup, where the inflaton field is the same as in the four-dimensional Starobinsky model. The resulting predictions for the CMB observables are nearly indistinguishable from those of the latter.

Comments: 15 pages, 1 figure

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