English

Omega from the COBE-DMR anisotropy maps

Astrophysics 2015-06-24 v1

Abstract

We have made a likelihood statistical analysis of the angular correlations in the {\it COBE}-DMR two-year sky maps by Monte Carlo simulation of the temperature fluctuations. We assume an open universe and consider as primordial power spectrum the Harrison-Zeldovich one, P(k)=AkP(k)=Ak. We find that the flatness of the universe is not implied by the data. The quadrupole normalization amplitude, QrmsPSQ_{rms-PS}, is related to the density parameter, Ω\Omega, by QrmsPS=10.67+55.81Ω128.59Ω2+81.26Ω3 μQ_{rms-PS} = 10.67 + 55.81 \Omega - 128.59 \Omega^2 + 81.26 \Omega^3\ \muK. We have determined the p.d.f. of Ω\Omega due to cosmic plus sampling (i.e. 2020^\circ galactic cut) variance which generically shows a bimodal shape. The uncertainty as given by the r.m.s. is 0.35\approx 0.35, therefore to better constrain Ω\Omega experiments sensitive to higher multipoles (l>20l>20) should be considered.

Keywords

Cite

@article{arxiv.astro-ph/9507015,
  title  = {Omega from the COBE-DMR anisotropy maps},
  author = {L. Cayon and E. Martinez-Gonzalez and J. L. Sanz and N. Sugiyama and S. Torres},
  journal= {arXiv preprint arXiv:astro-ph/9507015},
  year   = {2015}
}

Comments

4 pages, 2 figures, 1 table, uuencoded encapsulated postscript file. Figure 2 available upon request

R2 v1 2026-07-22T09:26:23.581Z