Large and small field inflation from hyperbolic sigma models
Rolf Schimmrigk

TL;DR
This paper explores how hyperbolic sigma models in modular inflation can produce both large and small field inflation within a single framework, analyzing initial conditions, phenomenological constraints, and observational prospects.
Contribution
It demonstrates that modular inflation models with hyperbolic geometry naturally accommodate both large and small field inflationary trajectories, providing detailed analysis of initial conditions and experimental constraints.
Findings
Both large and small field inflation are possible in hyperbolic sigma models.
Constraints on the curvature scalar can be derived from upcoming experiments.
The model predicts observable tensor ratios suitable for future experiments.
Abstract
Long standing themes in inflation include the issue of large field vs. small field inflation as well as the question what fraction of phase space leads to sufficient inflation, and furthermore is compatible with the experimental data. In the present paper these issues are discussed in the context of modular inflation, a specialization of the framework of automorphic nonlinear -models associated to homogeneous spaces in which the continuous shift symmetry group is weakly broken to discrete subgroups . The target spaces of these theories inherit a curved structure from the group , which in the case of modular invariant inflation leads to a hyperbolic field space geometry. It is shown that in this class of models the symmetry structure leads to both large and small field inflationary trajectories within a single modular inflation model. The present paper…
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