The Atacama Cosmology Telescope: Cosmological Parameters from the 2008 Power Spectra
J. Dunkley, R. Hlozek, J. Sievers, V. Acquaviva, P. A. R. Ade, P., Aguirre, M. Amiri, J. W. Appel, L. F. Barrientos, E. S. Battistelli, J. R., Bond, B. Brown, B. Burger, J. Chervenak, S. Das, M. J. Devlin, S. R. Dicker,, W. Bertrand Doriese, R. Dunner, T. Essinger-Hileman

TL;DR
This paper analyzes the 2008 Atacama Cosmology Telescope data to derive cosmological parameters, confirming the LCDM model, detecting primordial helium and relativistic species, and constraining features like the running spectral index and cosmic strings.
Contribution
First detailed analysis of ACT 2008 CMB power spectra, providing improved constraints on cosmological parameters and detecting primordial helium and relativistic species.
Findings
LCDM model fits the data well
Detection of primordial helium with Y_P=0.313+-0.044
Detection of relativistic species with Neff=5.3+-1.3
Abstract
We present cosmological parameters derived from the angular power spectrum of the cosmic microwave background (CMB) radiation observed at 148 GHz and 218 GHz over 296 deg^2 with the Atacama Cosmology Telescope (ACT) during its 2008 season. ACT measures fluctuations at scales 500<l<10000. We fit a model for the lensed CMB, Sunyaev-Zel'dovich (SZ), and foreground contribution to the 148 GHz and 218 GHz power spectra, including thermal and kinetic SZ, Poisson power from radio and infrared point sources, and clustered power from infrared point sources. The power from thermal and kinetic SZ at 148 GHz is estimated to be B_3000 = 6.8+-2.9 uK^2, where B_l=l(l+1)C_l/2pi. We estimate primary cosmological parameters from the 148 GHz spectrum, marginalizing over SZ and source power. The LCDM cosmological model is a good fit to the data, and LCDM parameters estimated from ACT+WMAP are consistent…
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Taxonomy
TopicsHistory and Developments in Astronomy
