The Atacama Cosmology Telescope: likelihood for small-scale CMB data
J. Dunkley, E. Calabrese, J. Sievers, G. E. Addison, N. Battaglia, E., S. Battistelli, J. R. Bond, S. Das, M. J. Devlin, R. Dunner, J. W. Fowler, M., Gralla, A. Hajian, M. Halpern, M. Hasselfield, A. D. Hincks, R. Hlozek, J. P., Hughes, K. D. Irwin, A. Kosowsky, T. Louis

TL;DR
This paper presents a detailed likelihood model for small-scale CMB data from the Atacama Cosmology Telescope, incorporating secondary effects and foregrounds, and extends it to include South Pole Telescope data for improved cosmological analysis.
Contribution
The paper introduces a comprehensive nine-parameter model and a likelihood function for small-scale CMB data, enabling more accurate cosmological parameter estimation from multi-frequency measurements.
Findings
Excellent fit of the model to ACT and SPT data.
Derived a CMB-only likelihood for cosmological analysis.
Validated the model's effectiveness across different datasets.
Abstract
The Atacama Cosmology Telescope has measured the angular power spectra of microwave fluctuations to arcminute scales at frequencies of 148 and 218 GHz, from three seasons of data. At small scales the fluctuations in the primordial Cosmic Microwave Background (CMB) become increasingly obscured by extragalactic foregounds and secondary CMB signals. We present results from a nine-parameter model describing these secondary effects, including the thermal and kinematic Sunyaev-Zel'dovich (tSZ and kSZ) power; the clustered and Poisson-like power from Cosmic Infrared Background (CIB) sources, and their frequency scaling; the tSZ-CIB correlation coefficient; the extragalactic radio source power; and thermal dust emission from Galactic cirrus in two different regions of the sky. In order to extract cosmological parameters, we describe a likelihood function for the ACT data, fitting this model to…
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