English

Observational Constraints on the Spectral Index

Astrophysics 2008-02-03 v2 High Energy Physics - Phenomenology

Abstract

We address the possibility of bounding the spectral index nn of primordial density fluctuations, using both the cosmic microwave background (cmb) anisotropy and data on galaxies and clusters. Each piece of galaxy and cluster data is reduced to a value of σ(R)\sigma(R) (the linearly evolved {\em rms} density contrast with top hat smoothing on scale RR) which allows data on different scales to be readily compared. As a preliminary application, we normalise the spectrum using the ten degree variance of the COBE data, and then compare the prediction with a limited sample of low energy data, for the MDM model with various values of nn, Ων\Omega_\nu and hh. With h=.5h=.5, the data constrain the spectral index to the range 0.7\lsimn\lsim1.20.7\lsim n \lsim 1.2. If gravitational waves contribute to the cmb anisotropy with relative strength R=6(1n)R=6(1-n) (as in some models of inflation), the lower limit on nn is increased to about 0.850.85. The uncertainty in hh widens this band by about 0.10.1 at either end.

Keywords

Cite

@article{arxiv.astro-ph/9401014,
  title  = {Observational Constraints on the Spectral Index},
  author = {Andrew R Liddle and David H Lyth},
  journal= {arXiv preprint arXiv:astro-ph/9401014},
  year   = {2008}
}

Comments

11 pages. Revised version with an extended text and comments on damped Lyman alpha systems. Latex file for the text, plus a ps file for the two figures

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