Systematics of Axion Inflation in Calabi-Yau Hypersurfaces
arXiv:1603.01259 · doi:10.1007/JHEP02(2017)014
Abstract
We initiate a comprehensive survey of axion inflation in compactifications of type IIB string theory on Calabi-Yau hypersurfaces in toric varieties. For every threefold with in the Kreuzer-Skarke database, we compute the metric on Kähler moduli space, as well as the matrix of four-form axion charges of Euclidean D3-branes on rigid divisors. These charges encode the possibility of enlarging the field range via alignment. We then determine an upper bound on the inflationary field range that results from the leading instanton potential, in the absence of monodromy. The bound on the field range in this ensemble is , in a compactification where the smallest curve volume is , and we argue that the sigma model expansion is adequately controlled. The largest increase resulting from alignment is a factor . We also examine a set of threefolds with up to and characterize their axion charge matrices. We discuss how our findings could be modified by the effects of orientifolding, seven-branes, and fluxes.
28 pages, 6 figures, 1 table