arXiv:1501.05812·v2·High Energy Physics — Theory
Challenges for Large-Field Inflation and Moduli Stabilization
Wilfried Buchmuller🇩🇪 · Emilian Dudas🇫🇷 · Lucien Heurtier🇫🇷 · Alexander Westphal🇩🇪 · Clemens Wieck🇩🇪 · Martin Wolfgang Winkler🇩🇪
Abstract
We analyze the interplay between Kähler moduli stabilization and chaotic inflation in supergravity. While heavy moduli decouple from inflation in the supersymmetric limit, supersymmetry breaking generically introduces non-decoupling effects. These lead to inflation driven by a soft mass term, , where is a supersymmetric mass parameter. This scenario needs no stabilizer field, but the stability of moduli during inflation imposes a large supersymmetry breaking scale, , and a careful choice of initial conditions. This is illustrated in three prominent examples of moduli stabilization: KKLT stabilization, Kähler Uplifting, and the Large Volume Scenario. Remarkably, all models have a universal effective inflaton potential which is flattened compared to quadratic inflation. Hence, they share universal predictions for the CMB observables, in particular a lower bound on the tensor-to-scalar ratio, .
Comments: 44+1 pages, 6 figures, minor modifications, references added