The fine tuning problem in pre-big-bang inflation
Abstract
We examine the effect of spatial curvature in the pre-big-bang inflationary model suggested by string theory. We study corrections and we show that, independently of the initial curvature, they lead to a phase of exponential inflation. The amount of inflation in this phase is long enough to solve the horizon and flatness problems if the evolution starts deeply into the weak coupling regime. There is a region of the parameter space of the model where such a long inflationary phase at the string scale is consistent with COBE anisotropies, millisecond pulsar timing and nucleosynthesis constraints. We discuss implications for the spectrum of relic gravitational waves at the frequencies of LIGO and Virgo.
Keywords
Cite
@article{arxiv.gr-qc/9706053,
title = {The fine tuning problem in pre-big-bang inflation},
author = {Michele Maggiore and Riccardo Sturani},
journal= {arXiv preprint arXiv:gr-qc/9706053},
year = {2009}
}
Comments
revised Sept. 97; the new version includes a discussion of the compatibility between a long inflationary phase at the string scale and the experimental bounds on the gravitational wave spectrum