Anharmonic Evolution of the Cosmic Axion Density Spectrum
Abstract
We present analytic solutions to the spatially homogeneous axion field equation, using a model potential which strongly resembles the standard anharmonic potential, but contains only a piece-wise second order term. Our exactly soluble model for spans the entire range . In particular, we are able to confirm (i) Turner's numeric correction factors \cite{Turner} to the adiabatic and harmonic analytic treatments of homogeneous axion oscillations, and (ii) Lyth's estimate \cite{Lyth} valid near the metastable misalignment angle at the peak of the potential. We compute the enhancement of axion density fluctuations that occurs when the axion mass becomes significant at GeV. We find that the anharmonicity amplifies density \mbox{f}luctuations, but only significantly for relatively large initial misalignment angles. The enhancement factor is (2,3,4,13) for .
Keywords
Cite
@article{arxiv.astro-ph/9405028,
title = {Anharmonic Evolution of the Cosmic Axion Density Spectrum},
author = {K. Strobl and T. J. Weiler},
journal= {arXiv preprint arXiv:astro-ph/9405028},
year = {2009}
}
Comments
26 pages, 6 figures appended as a ps-file, Latex, DAMTP-94-21, VAND-TH-94-4