Inflation from the internal volume in type IIB/F-theory compactification

Antoniadis, Ignatios; Chen, Yifan; Leontaris, George K. (2019). Inflation from the internal volume in type IIB/F-theory compactification. International journal of modern physics. A - particles and fields, gravitation, cosmology, 34(08), p. 1950042. World Scientific 10.1142/S0217751X19500428

[img] Text
Int.J.Mod.Phys.A34.pdf - Published Version
Restricted to registered users only
Available under License Publisher holds Copyright.

Download (335kB) | Request a copy

We study the cosmological inflation within a recently proposed framework of perturbative moduli stabilization in type IIB/F-theory compactifications on Calabi–Yau threefolds. The stabilization mechanism utilizes three stacks of magnetized 7-branes and relies on perturbative corrections to the Kähler potential that grow logarithmically in the transverse sizes of co-dimension two due to local tadpoles of closed string states in the bulk. The inflaton is the Kähler modulus associated with the internal compactification volume that starts rolling down the scalar potential from an initial condition around its maximum. Although the parameter space allows moduli stabilization in de Sitter space, the resulting number of e-foldings is too low. An extra uplifting source of the vacuum energy is then required to achieve phenomenologically viable inflation and a positive (although tiny) vacuum energy at the minimum. We discuss a class of uplifting potentials arising from strongly coupled matter fields. In a particular case, they reproduce the effect of the new Fayet–Iliopoulos term recently discussed in a supergravity context, that can be written for a non-R-symmetry U(1) and is gauge invariant at the Lagrangian level.

Item Type:

Journal Article (Original Article)

Division/Institute:

10 Strategic Research Centers > Albert Einstein Center for Fundamental Physics (AEC)
08 Faculty of Science > Institute of Theoretical Physics

UniBE Contributor:

Antoniadis, Ignatios

Subjects:

500 Science > 530 Physics

ISSN:

0217-751X

Publisher:

World Scientific

Language:

English

Submitter:

Esther Fiechter

Date Deposited:

02 Jul 2019 09:17

Last Modified:

05 Dec 2022 15:28

Publisher DOI:

10.1142/S0217751X19500428

ArXiv ID:

1810.05060

BORIS DOI:

10.7892/boris.130667

URI:

https://boris.unibe.ch/id/eprint/130667

Actions (login required)

Edit item Edit item
Provide Feedback