Abstract

We perform a combined fit to angular power spectra of unresolved infrared (IR) point sources from the Planck satellite (at 217, 353, 545, and 857 GHz, over angular scales 100 approx < l approx < 2200), the Balloon-borne Large-Aperture Submillimeter Telescope (BLAST; 250, 350, and 500 micron; 1000 approx < l approx < 9000), and from correlating BLAST and Atacama Cosmology Telescope (ACT; 148 and 218 GHz) maps. We find that the clustered power over the range of angular scales and frequencies considered is well fitted by a simple power law of the form C(sup clust)(sub l) varies as l (sub n) with n = 1.25 +/- 0.06. While the IR sources are understood to lie at a range of redshifts, with a variety of dust properties, we find that the frequency dependence of the clustering power can be described by the square of a modified blackbody, (sup Beta)B(, T(sub eff) ), with a single emissivity index Beta = 2.20 +/- 0.07 and effective temperature T(sub eff) = 9.7 K. Our predictions for the clustering amplitude are consistent with existing ACT and South Pole Telescope results at around 150 and 220 GHz, as is our prediction for the effective dust spectral index, which we find to be alpha(sub 150-220) = 3.68 +/- 0.07 between 150 and 220 GHz. Our constraints on the clustering shape and frequency dependence can be used to model the IR clustering as a contaminant in cosmic microwave background anisotropy measurements. The combined Planck and BLAST data also rule out a linear bias clustering model.

Keywords

PhysicsCosmic microwave backgroundAstrophysicsPlanckTelescopeCluster analysisPower lawBlack-body radiationCosmic background radiationSpectral indexSpectral densityAnisotropyAstronomySpectral lineOpticsStatistics

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Publication Info

Year
2012
Type
article
Volume
752
Issue
2
Pages
120-120
Citations
36
Access
Closed

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Cite This

Graeme E. Addison, Joanna Dunkley, Amir Hajian et al. (2012). POWER-LAW TEMPLATE FOR INFRARED POINT-SOURCE CLUSTERING. The Astrophysical Journal , 752 (2) , 120-120. https://doi.org/10.1088/0004-637x/752/2/120

Identifiers

DOI
10.1088/0004-637x/752/2/120