Revealing Galactic dust beneath the cosmic infrared background anisotropies with Wavelet Phase Harmonics
Srijita Sinha, Tuhin Ghosh, Erwan Allys, François Boulanger, Jean-Marc Delouis
Abstract
Separating Galactic dust emission from cosmic infrared background (CIB) anisotropies is challenging because both the emission components have similar spectral properties. The primary objective of this work is to develop a component-separation algorithm to extract the Galactic dust emission from CIB anisotropies dominated sky regions using Wavelet Phase Harmonics statistics (WPH). We apply our algorithm to the Planck 353\,GHz frequency band over three sky regions spanning a range of neutral hydrogen (HI) column densities at high Galactic latitudes. In all three regions, we successfully recover the dust signal without significant leakage between the dust and CIB anisotropy components. We use the low signal-to-noise (S/N) region to validate the component-separation algorithm and compare its performance with the standard template-fit approach that uses the linear dust-HI correlation relation. For intermediate and high S/N regions, we separate the dust signal map from the contamination while preserving the statistical correlation with HI column density map. Dust maps are used to analyze the relationship between dust and HI emissions. We characterize the spatial variations in dust emission relative to the hydrogen column density as a function of the angular scale.
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