English

Anharmonic Evolution of the Cosmic Axion Density Spectrum

Astrophysics 2009-10-22 v1 High Energy Physics - Phenomenology

Abstract

We present analytic solutions to the spatially homogeneous axion field equation, using a model potential which strongly resembles the standard anharmonic (1cosNθ)(1-\cos N\theta) potential, but contains only a piece-wise second order term. Our exactly soluble model for θ(t)\theta(t) spans the entire range [π/N,π/N][-\pi/N,\pi/N]. 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 π/N\pi/N at the peak of the potential. We compute the enhancement of axion density fluctuations that occurs when the axion mass becomes significant at T1T\sim 1 GeV. We find that the anharmonicity amplifies density \mbox{f}luctuations, but only significantly for relatively large initial misalignment angles. The enhancement factor is \sim (2,3,4,13) for θin(0.85,0.90,0.95,0.99)×π\theta_{\rm in}\sim (0.85,0.90,0.95,0.99)\times\pi.

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