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Reconstruction of high-resolution SZ maps from heterogeneous datasets using needlets

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arxiv 1207.4683 v1 pith:6DGW6FRA submitted 2012-07-19 astro-ph.CO

Reconstruction of high-resolution SZ maps from heterogeneous datasets using needlets

classification astro-ph.CO
keywords datasetsexperimentshigh-resolutionneedletcombinationexploitationheterogeneoushigh
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The aim of this work is to propose a joint exploitation of heterogeneous datasets from high-resolution/few-channel experiments and low-resolution/many-channel experiments by using a multiscale needlet Internal Linear Combination (ILC), in order to optimize the thermal Sunyaev-Zeldovich (SZ) effect reconstruction at high resolution. We highlight that needlet ILC is a powerful and tunable component separation method which can easily deal with multiple experiments with various specifications. Such a multiscale analysis renders possible the joint exploitation of high-resolution and low-resolution data, by performing for each needlet scale a combination of some specific channels, either from one dataset or both datasets, selected for their relevance to the angular scale considered, thus allowing to simultaneously extract high resolution SZ signal from compact clusters and remove Galactic foreground contamination at large scales.

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  1. Enhanced foreground mitigation in thermal SZ Compton-$y$ maps via polarization and deprojection

    astro-ph.CO 2026-03 conditional novelty 6.0

    Combining temperature and polarization in a needlet ILC cuts residual Galactic contamination in the Planck thermal SZ y-map by about 40% (IRAS cross-correlation), with larger projected gains for future low-noise surveys.