Untangling dust emission and cosmic infrared background anisotropies with the scattering transform statistics
arXiv:2603.06110 · doi:10.1051/0004-6361/202659670
Abstract
The template-fit approach is often used to separate Galactic dust emission from cosmic infrared background (CIB) anisotropies in low column density regions, under the assumption that gas and dust are tightly correlated. However, this method fails in regions where additional Galactic emission from molecular hydrogen, diffuse ionized gas, and dark gas is present. We develop and test a statistical component-separation method to extract the dust signal from contaminated observations using Scattering Covariance (SC) statistics. We first obtain a set of CIB maps over square patches, each covering an area of , using the linear correlation between dust and Galactic emission, which is valid in low column density regions, through the template-fit approach. We then construct, from these maps, a generative model of the CIB using SC statistics. Finally, we rely on this contamination model to perform component separation of dust and CIB in the data for different sky regions. Applying our algorithm to the observations, we recover a dust map for a test sky region that exhibits more structure than the corrected SFD map at . The differences observed at the map level can be explained by decomposing the recovered dust map into two gas phases: dust associated with and dust associated with . This work provides a clear pathway for mapping Galactic interstellar reddening over intermediate and high Galactic latitudes.
16 pages; 26 figures; To appear in the Forthcoming section of Astronomy & Astrophysics (A&A)