Planck 2018 results. XI. Polarized dust foregrounds
Planck Collaboration: Y. Akrami, M. Ashdown, J. Aumont, C., Baccigalupi, M. Ballardini, A. J. Banday, R. B. Barreiro, N. Bartolo, S., Basak, K. Benabed, J.-P. Bernard, M. Bersanelli, P. Bielewicz, J. R. Bond, J., Borrill, F. R. Bouchet, F. Boulanger, A. Bracco, M. Bucher

TL;DR
This paper characterizes polarized dust emission using Planck data, revealing its spectral properties, spatial variations, and correlations, which are crucial for foreground removal in primordial B-mode polarization studies.
Contribution
It provides detailed measurements of dust polarization power spectra, spectral energy distributions, and cross-frequency correlations across multiple sky regions, advancing foreground modeling for CMB analysis.
Findings
Dust polarization spectra vary across sky regions.
The dust SED fits a single-temperature modified blackbody with spectral index 1.53.
No evidence for decorrelation across frequencies was found.
Abstract
The study of polarized dust emission has become entwined with the analysis of the cosmic microwave background (CMB) polarization. We use new Planck maps to characterize Galactic dust emission as a foreground to the CMB polarization. We present Planck EE, BB, and TE power spectra of dust polarization at 353 GHz for six nested sky regions covering from 24 to 71 % of the sky. We present power-law fits to the angular power spectra, yielding evidence for statistically significant variations of the exponents over sky regions and a difference between the values for the EE and BB spectra. The TE correlation and E/B power asymmetry extend to low multipoles that were not included in earlier Planck polarization papers. We also report evidence for a positive TB dust signal. Combining data from Planck and WMAP, we determine the amplitudes and spectral energy distributions (SEDs) of polarized…
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