Seven-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Sky Maps, Systematic Errors, and Basic Results
N. Jarosik, C. L. Bennett, J. Dunkley, B. Gold, M. R. Greason, M., Halpern, R. S. Hill, G. Hinshaw, A. Kogut, E. Komatsu, D. Larson, M. Limon,, S. S. Meyer, M. R. Nolta, N. Odegard, L. Page, K. M. Smith, D. N. Spergel, G., S. Tucker, J. L. Weiland, E. Wollack, E. L. Wright

TL;DR
The seven-year WMAP observations provide refined sky maps and cosmological parameters, confirming the Lambda-CDM model and offering new constraints on the universe's composition, structure, and evolution.
Contribution
This paper presents the most precise WMAP data to date, improving noise reduction, instrument calibration, and analysis methods, leading to tighter cosmological constraints.
Findings
Consistent with previous results but with reduced noise.
Robust measurement of the third acoustic peak.
Detection of primordial Helium abundance at 3 sigma.
Abstract
(Abridged) New full sky temperature and polarization maps based on seven years of data from WMAP are presented. The new results are consistent with previous results, but have improved due to reduced noise from the additional integration time, improved knowledge of the instrument performance, and improved data analysis procedures. The improvements are described in detail. The seven year data set is well fit by a minimal six-parameter flat Lambda-CDM model. The parameters for this model, using the WMAP data in conjunction with baryon acoustic oscillation data from the Sloan Digital Sky Survey and priors on H_0 from Hubble Space Telescope observations, are: Omega_bh^2 = 0.02260 +-0.00053, Omega_ch^2 = 0.1123 +-0.0035, Omega_Lambda = 0.728 +0.015 -0.016, n_s = 0.963 +-0.012, tau = 0.087 +-0.014 and sigma_8 = 0.809 +-0.024 (68 % CL uncertainties). The temperature power spectrum…
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