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Angular Power Spectra of the Millimeter-wavelength Background Light from Dusty Star-forming Galaxies with the South Pole Telescope

Hall, N.~R. and Keisler, R. and Knox, L. and Reichardt, C.~L. and Ade, P.~A.~R. and Aird, K.~A. and Benson, B.~A. and Bleem, L.~E. and Carlstrom, J.~E

Keywords

cosmic background radiation, galaxies: abundances, large-scale structure of universe, submillimeter: diffuse background, submillimeter: galaxies

Abstract

We use data from the first 100 square-degree field observed by the South Pole Telescope (SPT) in 2008 to measure the angular power spectrum of temperature anisotropies contributed by the background of dusty star-forming galaxies (DSFGs) at millimeter wavelengths. From the auto and cross-correlation of 150 and 220 GHz SPT maps, we significantly detect both Poisson distributed and, for the first time at millimeter wavelengths, clustered components of power from a background of DSFGs. The spectral indices between 150 and 220 GHz of the Poisson and clustered components are found to be 3.86 _s16- 0.23 and 3.8 _s16- 1.3 respectively, implying a steep scaling of the dust emissivity index beta ~ 2. The Poisson and clustered power detected in SPT, BLAST (at 600, 860, and 1200 GHz), and Spitzer (1900 GHz) data can be understood in the context of a simple model in which all galaxies have the same graybody spectrum with dust emissivity index of beta = 2 and dust temperature T_d = 34 K. In this model, half of the 150 GHz background light comes from redshifts greater than 3.2. We also use the SPT data to place an upper limit on the amplitude of the kinetic Sunyaev-Zel_s14dovich power spectrum at l = 3000 of 13 uK^2 at 95% confidence.

Information

Published
2010 as article
718 - page(s): 632-646
Contact
Prof. Dr. Joseph Mohr
Type
theoretical work
Links
pdf
adsabs.harvard.edu/a…
Related to the research area(s):
E
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