D7-Brane Moduli Space in Axion Monodromy and Fluxbrane Inflation
Maximilian Arends, Arthur Hebecker, Konrad Heimpel, Sebastian C., Kraus, Dieter Lust, Christoph Mayrhofer, Christoph Schick, Timo Weigand

TL;DR
This paper investigates the quantum-corrected moduli space of D7-branes in string theory, focusing on implications for inflationary models like axion monodromy and fluxbrane inflation, and explores flux choices and loop corrections.
Contribution
It provides a detailed analysis of D7-brane moduli space, shift-symmetry-preserving fluxes, and loop corrections relevant for inflationary model building in string theory.
Findings
Shift symmetry in D7-brane moduli enables large-field inflation models.
Flux choices can induce or avoid inflaton mass terms, affecting inflation type.
Loop corrections and flux superpotentials are crucial for moduli stabilization and inflation dynamics.
Abstract
We analyze the quantum-corrected moduli space of D7-brane position moduli with special emphasis on inflationary model building. D7-brane deformation moduli are key players in two recently proposed inflationary scenarios: The first, D7-brane chaotic inflation, is a variant of axion monodromy inflation which allows for an effective 4d supergravity description. The second, fluxbrane inflation, is a stringy version of D-term hybrid inflation. Both proposals rely on the fact that D7-brane coordinates enjoy a shift-symmetric Kahler potential at large complex structure of the Calabi-Yau threefold, making them naturally lighter than other fields. This shift symmetry is inherited from the mirror-dual Type IIA Wilson line on a D6-brane at large volume. The inflaton mass can be provided by a tree-level term in the flux superpotential. It induces a monodromy and, if tuned to a sufficiently small…
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