Trans-Planckian Physics from a Nonlinear Dispersion Relation
Abstract
We study a particular nonlinear dispersion relation -- a series expansion in the physical wavenumber -- for modeling first-order corrections in the equation of motion of a test scalar field in a de Sitter spacetime from trans-Planckian physics in cosmology. Using both a numerical approach and a semianalytical one, we show that the WKB approximation previously adopted in the literature should be used with caution, since it holds only when the comoving wavenumber . We determine the amplitude and behavior of the corrections on the power spectrum for this test field. Furthermore, we consider also a more realistic model of inflation, the power-law model, using only a numerical approach to determine the corrections on the power spectrum.
Keywords
Cite
@article{arxiv.0808.1262,
title = {Trans-Planckian Physics from a Nonlinear Dispersion Relation},
author = {S. E. Joras and G. Marozzi},
journal= {arXiv preprint arXiv:0808.1262},
year = {2009}
}
Comments
11 pages, 10 figures. Some changes made, comments and references added, a figure added, typos corrected, conclusions unchanged, version accepted for pubblication in Phys. Rev. D