New potentials for string axion inflation
Tatsuo Kobayashi, Akane Oikawa, Hajime Otsuka

TL;DR
This paper introduces a novel axion inflation model within type IIB string theory, utilizing complex structure moduli and instantonic corrections, compatible with moduli stabilization and featuring a study of reheating temperatures.
Contribution
It presents a new axion inflation scenario based on complex structure moduli with instantonic corrections, expanding the landscape of string-inspired inflation models.
Findings
Compatible with Kähler moduli stabilization.
Provides estimates for reheating temperature.
Demonstrates the role of instantonic corrections in potential shaping.
Abstract
We propose a new type of axion inflation with complex structure moduli in the framework of type IIB superstring theory compactified on Calabi-Yau manifold. The inflaton is identified as the axion for the complex structure moduli whose potential is originating from instantonic corrections appearing through the period vector of mirror Calabi-Yau manifold. The axionic shift symmetry is broken down to the discrete one by the inclusion of instantonic correction and certain three-from fluxes. Our proposed inflation scenario is compatible with K\"ahler moduli stabilization. We also study a typical reheating temperature in the case of complex structure moduli inflation.
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