An Assessment of Contamination in the thermal-SZ Map Using Cross Correlations
Abstract
We search for the potential contamination in the Planck thermal Sunyaev-Zeldovich (tSZ) map by calculating the cross-correlation between the tSZ signal and weak lensing by large scale structure and the Cosmic Microwave Background (CMB). The lensing data we use is the convergence map from the Red Sequence Cluster Lensing Survey (RCSLens) and the Planck CMB lensing map. We reconstruct the tSZ map with a Needlet Internal Linear Combination method using the HFI sky maps from the Planck satellite. We remove the CMB signal while minimizing the residual noise. The cross correlation signal from our reconstructed map is consistent with that from the Planck team's NILC map. The CIB and galactic dust emission are two potential sources of contamination in the reconstructed map. We remove the CIB signal by subtracting the CIB maps reconstructed by Planck collaboration from the raw temperature maps. We find that cross-correlation between the CIB and galactic lensing contributes to in the Planck NILC tSZ cross galactic lensing signal within , which implies that previous detections of the tSZ cross galactic lensing is robust to CIB contaminations. In contrast, the Planck NILC tSZ cross CMB lensing is biased by in the same range. Galactic dust contamination is tested by projecting out a grey-body dust models with different dust spectral indices. Galactic dust does not affect galactic lensing cross tSZ signal significantly.
Keywords
Cite
@article{arxiv.1809.09636,
title = {An Assessment of Contamination in the thermal-SZ Map Using Cross Correlations},
author = {Ziang Yan and Alireza Hojjati and Tilman Tröster and Gary Hinshaw and Ludovic van Waerbeke},
journal= {arXiv preprint arXiv:1809.09636},
year = {2019}
}
Comments
12 pages, 14 figures, 4 tables