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Solving the $eta$-Problem in Hybrid Inflation with Heisenberg Symmetry and Stabilized Modulus

Antusch, Stefan and Bastero-Gil, Mar and Dutta, Koushik and King, Steve F. and Kostka, Philipp M.

Keywords

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Abstract

We propose a class of models in which the $eta$-problem of supersymmetric hybrid inflation is resolved using a Heisenberg symmetry, where the associated modulus field is stabilized and made heavy with the help of the large vacuum energy during inflation without any fine-tuning. The proposed class of models is well motivated both from string theory considerations, since it includes the commonly encountered case of no-scale supergravity Kaehler potential, and from the perspective of particle physics since a natural candidate for the inflaton in this class of models is the right-handed sneutrino which is massless during the inflationary epoch, and subsequently acquires a large mass at the end of inflation. We study a specific example motivated by sneutrino hybrid inflation with no-scale supergravity in some detail, and show that the spectral index may lie within the latest WMAP range, while the tensor-to-scalar ratio is very small.

Information

Published
2009 as article
JCAP, 0901 - page(s): 040
Type
theoretical work
Links
pdf
spires
www-library.desy.de/…
Related to the research area(s):
A, D
e-Print
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