The Atacama Cosmology Telescope: A Measurement of the 600< ell <8000 Cosmic Microwave Background Power Spectrum at 148 GHz
J. W. Fowler, 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. B. Doriese, J. Dunkley,, R. D\"unner, T. Essinger-Hileman, R. P. Fisher

TL;DR
This paper reports a detailed measurement of the cosmic microwave background power spectrum at 148 GHz using the Atacama Cosmology Telescope, providing insights into small-scale anisotropies, point sources, and the Sunyaev-Zel'dovich effect.
Contribution
First high-resolution measurement of CMB power spectrum at 148 GHz over 228 square degrees, including analysis of SZ effect and point source contributions.
Findings
Power spectrum consistent with Silk damping models.
Constraints on SZ effect amplitude: sigma8^SZ < 0.86.
Cross-correlation with WMAP confirms calibration accuracy.
Abstract
We present a measurement of the angular power spectrum of the cosmic microwave background (CMB) radiation observed at 148 GHz. The measurement uses maps with 1.4' angular resolution made with data from the Atacama Cosmology Telescope (ACT). The observations cover 228 square degrees of the southern sky, in a 4.2-degree-wide strip centered on declination 53 degrees South. The CMB at arcminute angular scales is particularly sensitive to the Silk damping scale, to the Sunyaev-Zel'dovich (SZ) effect from galaxy clusters, and to emission by radio sources and dusty galaxies. After masking the 108 brightest point sources in our maps, we estimate the power spectrum between 600 < \ell < 8000 using the adaptive multi-taper method to minimize spectral leakage and maximize use of the full data set. Our absolute calibration is based on observations of Uranus. To verify the calibration and test the…
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