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Lensing reconstruction from a patchwork of polarization maps

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arxiv 1405.6568 v2 pith:6WVKDE5G submitted 2014-05-26 astro-ph.CO astro-ph.IM

classification astro-ph.COastro-ph.IM
keywords lensingmapspolarizationb-modeground-basedpatchworkpotentialreconstruction
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

The lensing signals involved in CMB polarization maps have already been measured with ground-based experiments such as SPTpol and POLARBEAR, and would become important as a probe of cosmological and astrophysical issues in the near future. Sizes of polarization maps from ground-based experiments are, however, limited by contamination of long wavelength modes of observational noise. To further extract the lensing signals, we explore feasibility of measuring lensing signals from a collection of small sky maps each of which is observed separately by a ground-based large telescope, i.e., lensing reconstruction from a patchwork map of large sky coverage organized from small sky patches. We show that, although the B-mode power spectrum obtained from the patchwork map is biased due to baseline uncertainty, bias on the lensing potential would be negligible if the B-mode on scales larger than the blowup scale of $1/f$ noise is removed in the lensing reconstruction. As examples of cosmological applications, we also show 1) the cross-correlations between the reconstructed lensing potential and full-sky temperature/polarization maps from satellite missions such as PLANCK and LiteBIRD, and 2) the use of the reconstructed potential for delensing B-mode polarization of LiteBIRD observation.

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  1. Optimal filtering for CMB lensing reconstruction

    astro-ph.CO 2019-09 accept novelty 6.0 of 10

    Optimal anisotropic CMB filtering plus a second-stage filter on the reconstructed lensing convergence map reduces lensing power spectrum variance by factor 2-5 relative to isotropic filtering, with up to 30% additiona...

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