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arxiv: 1612.03960 · v2 · pith:6M7SOCBAnew · submitted 2016-12-12 · ✦ hep-th · gr-qc

Inflation in random Gaussian landscapes

classification ✦ hep-th gr-qc
keywords inflationgaussiandistributionslandscapesmethodsnumberrandomtechniques
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We develop analytic and numerical techniques for studying the statistics of slow-roll inflation in random Gaussian landscapes. As an illustration of these techniques, we analyze small-field inflation in a one-dimensional landscape. We calculate the probability distributions for the maximal number of e-folds and for the spectral index of density fluctuations $n_s$ and its running $\alpha_s$. These distributions have a universal form, insensitive to the correlation function of the Gaussian ensemble. We outline possible extensions of our methods to a large number of fields and to models of large-field inflation. These methods do not suffer from potential inconsistencies inherent in the Brownian motion technique, which has been used in most of the earlier treatments.

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