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Correlated Errors in the COBE DMR Sky Maps

Astrophysics 2009-10-22 v1

Abstract

The {\it COBE} DMR sky maps contain low-level correlated noise. We obtain estimates of the amplitude and pattern of the correlated noise from three techniques: angular averages of the covariance matrix, Monte Carlo simulations of two-point correlation functions, and direct analysis of the DMR maps. The results from the three methods are mutually consistent. The noise covariance matrix of a DMR sky map is diagonal to an accuracy of better than 1\%. For a given sky pixel, the dominant noise covariance occurs with the ring of pixels at an angular separation of 60deg60 \deg due to the 60deg60 \deg separation of the DMR horns. The mean covariance at 60deg60 \deg is 0.45%0.14+0.180.45\% ^{+0.18}_{-0.14} of the mean variance. Additionally, the variance in a given pixel is 0.7%0.7\% greater than would be expected from a single beam experiment with the same noise properties. Auto-correlation functions suffer from a 1.5  σ\sim 1.5\; \sigma positive bias at 60deg60 \deg while cross-correlations have no bias. Published {\it COBE} DMR results are not significantly affected by correlated noise. COBE pre-print 94-

Keywords

Cite

@article{arxiv.astro-ph/9403021,
  title  = {Correlated Errors in the COBE DMR Sky Maps},
  author = {C. H. Lineweaver and G. F. Smoot and C. L. Bennett and E. L. Wright and L. Tenorio and A. Kogut and P. B. Keegstra and G. Hinshaw and A. J. Banday},
  journal= {arXiv preprint arXiv:astro-ph/9403021},
  year   = {2009}
}

Comments

11 pages + 3 figures, post-script file

R2 v1 2026-07-22T09:23:32.008Z