The Atacama Cosmology Telescope: Cosmological parameters from three seasons of data
Jonathan L. Sievers, Ren\'ee A. Hlozek, Michael R. Nolta, Viviana, Acquaviva, Graeme E. Addison, Peter A. R. Ade, Paula Aguirre, Mandana Amiri,, John William Appel, L. Felipe Barrientos, Elia S. Battistelli, Nick, Battaglia, J. Richard Bond, Ben Brown, Bryce Burger

TL;DR
This paper uses three seasons of Atacama Cosmology Telescope data to constrain cosmological parameters, including neutrino masses, relativistic degrees of freedom, and primordial helium, confirming consistency with the LCDM model.
Contribution
First detailed constraints on cosmological parameters from ACT three-season microwave background maps, including SZ effects and foreground modeling, combined with WMAP data.
Findings
Measured thermal SZ power spectrum at 148 GHz: 3.4 ± 1.4 μK^2 at ell=3000
Upper limit on kSZ power spectrum: 8.6 μK^2 (95% CL)
Constraints on neutrino properties and no evidence for variation in fundamental constants
Abstract
We present constraints on cosmological and astrophysical parameters from high-resolution microwave background maps at 148 GHz and 218 GHz made by the Atacama Cosmology Telescope (ACT) in three seasons of observations from 2008 to 2010. A model of primary cosmological and secondary foreground parameters is fit to the map power spectra and lensing deflection power spectrum, including contributions from both the thermal Sunyaev-Zeldovich (tSZ) effect and the kinematic Sunyaev-Zeldovich (kSZ) effect, Poisson and correlated anisotropy from unresolved infrared sources, radio sources, and the correlation between the tSZ effect and infrared sources. The power ell^2 C_ell/2pi of the thermal SZ power spectrum at 148 GHz is measured to be 3.4 +\- 1.4 muK^2 at ell=3000, while the corresponding amplitude of the kinematic SZ power spectrum has a 95% confidence level upper limit of 8.6 muK^2.…
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