English

Assessing Consistency Between WMAP 9-year and Planck 2015 Temperature Power Spectra

Cosmology and Nongalactic Astrophysics 2019-01-01 v2

Abstract

We perform a comparison of WMAP 9-year (WMAP9) and Planck 2015 cosmic microwave background (CMB) temperature power spectra across multipoles 30120030\leq\ell\leq1200. We generate simulations to estimate the correlation between the two datasets due to cosmic variance from observing the same sky. We find that their spectra are consistent within 1σ1\sigma. While we do not implement the optimal "C1C^{-1}" estimator on WMAP maps as in the WMAP9 analysis, we demonstrate that the change of pixel weighting only shifts our results at most at the 0.66σ0.66\sigma level. We also show that changing the fiducial power spectrum for simulations only impacts the comparison at around 0.1σ0.1\sigma level. We exclude <30\ell<30 both because WMAP9 data were included in the Planck 2015 <30\ell<30 analysis, and because the cosmic variance uncertainty on these scales is large enough that any remaining systematic difference between the experiments is extremely unlikely to affect cosmological constraints. The consistency shown in our analysis provides high confidence in both the WMAP9 temperature power spectrum and the overlapping multipole region of Planck 2015's, virtually independent of any assumed cosmological model. Our results indicate that cosmological model differences between Planck and WMAP do not arise from measurement differences, but from the high multipoles not measured by WMAP.

Keywords

Cite

@article{arxiv.1804.05428,
  title  = {Assessing Consistency Between WMAP 9-year and Planck 2015 Temperature Power Spectra},
  author = {Yajing Huang and Graeme E. Addison and Janet L. Weiland and Charles L. Bennett},
  journal= {arXiv preprint arXiv:1804.05428},
  year   = {2019}
}

Comments

10 pages, 6 figures

R2 v1 2026-06-23T01:24:13.123Z