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

TL;DR
This paper presents detailed analysis of 7-year WMAP data, refining measurements of the CMB power spectra and cosmological parameters, including matter density, reionization optical depth, and neutrino counts, supporting the LambdaCDM model.
Contribution
It provides the most precise WMAP measurements to date, improving constraints on cosmological parameters and testing the standard model with new data and analysis techniques.
Findings
Third acoustic peak in TT spectrum well measured
Temperature-polarization (TE) spectrum detected at 20 sigma
Upper limit on tensor modes improved by a factor of 2
Abstract
(Abridged) We present the angular power spectra derived from the 7-year maps and discuss the cosmological conclusions that can be inferred from WMAP data alone. The third acoustic peak in the TT spectrum is now well measured by WMAP. In the context of a flat LambdaCDM model, this improvement allows us to place tighter constraints on the matter density from WMAP data alone, and on the epoch of matter-radiation equality, The temperature-polarization (TE) spectrum is detected in the 7-year data with a significance of 20 sigma, compared to 13 sigma with the 5-year data. The low-l EE spectrum, a measure of the optical depth due to reionization, is detected at 5.5 sigma significance when averaged over l = 2-7. The BB spectrum, an important probe of gravitational waves from inflation, remains consistent with zero. The upper limit on tensor modes from polarization data alone is a factor of 2…
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