Planck intermediate results

The secondary cosmic microwave background (CMB) B-modes stem from the post-decoupling distortion of the polarization E-modes due to the gravitational lensing effect of large-scale structures. These lensing-induced B-modes constitute both a valuable probe of the dark matter distribution and an import...

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Veröffentlicht in:Astronomy and astrophysics (Berlin) 2016, Vol.596
Hauptverfasser: Ashdown, M., Aumont, J., Baccigalupi, C., Bartolo, N., Bernard, J.-P., Bonaldi, A., Bonavera, L., Bond, J. R., Bouchet, F. R., Boulanger, F., Burigana, C., Butler, R. C., Cardoso, J.-F., Chiang, H. C., Christensen, P. R., Colombo, L. P. L., Crill, B. P., Curto, A., Cuttaia, F., Danese, L., de Zotti, G., Diego, J. M., Doré, O., Ducout, A., Dupac, X., Elsner, F., Forni, O., Franceschi, E., Galeotta, S., Galli, S., Giard, M., Gjerløw, E., Hildebrandt, S. R., Hovest, W., Jaffe, A. H., Jones, W. C., Keskitalo, R., Knoche, J., Knox, L., Kunz, M., Lagache, G., Lamarre, J.-M., Linden-Vørnle, M., López-Caniego, M., Lubin, P. M., Maggio, G., Maino, D., Mangilli, A., Maris, M., Martínez-González, E., Meinhold, P. R., Mennella, A., Mitra, S., Miville-Deschênes, M.-A., Moneti, A., Montier, L., Morgante, G., Moss, A., Munshi, D., Naselsky, P., Nati, F., Natoli, P., Novikov, D., Novikov, I., Pagano, L., Pajot, F., Paoletti, D., Piacentini, F., Pierpaoli, E., Pointecouteau, E., Remazeilles, M., Ristorcelli, I., Rocha, G., Rosset, C., Roudier, G., Sandri, M., Santos, D., Savelainen, M., Savini, G., Scott, D., Spencer, L. D., Stompor, R., Sudiwala, R., Sunyaev, R., Sygnet, J.-F., Tauber, J. A., Toffolatti, L., Tomasi, M., Tristram, M., Tucci, M., Tuovinen, J., Valenziano, L., Valiviita, J., Vielva, P., Villa, F., Wade, L. A., Wandelt, B. D., Wehus, I. K., Yvon, D., Zacchei, A.
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Sprache:eng
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Zusammenfassung:The secondary cosmic microwave background (CMB) B-modes stem from the post-decoupling distortion of the polarization E-modes due to the gravitational lensing effect of large-scale structures. These lensing-induced B-modes constitute both a valuable probe of the dark matter distribution and an important contaminant for the extraction of the primary CMB B-modes from inflation. Planck provides accurate nearly all-sky measurements of both the polarization E-modes and the integrated mass distribution via the reconstruction of the CMB lensing potential. By combining these two data products, we have produced an all-sky template map of the lensing-induced B-modes using a real-space algorithm that minimizes the impact of sky masks. The cross-correlation of this template with an observed (primordial and secondary) B-mode map can be used to measure the lensing B-mode power spectrum at multipoles up to 2000. In particular, when cross-correlating with the B-mode contribution directly derived from the Planck polarization maps, we obtain lensing-induced B-mode power spectrum measurement at a significance level of 12σ, which agrees with the theoretical expectation derived from the Planck best-fit Λ cold dark matter model. This unique nearly all-sky secondary B-mode template, which includes the lensing-induced information from intermediate to small (10 ≲ ℓ ≲ 1000) angular scales, is delivered as part of the Planck 2015 public data release. It will be particularly useful for experiments searching for primordial B-modes, such as BICEP2/Keck Array or LiteBIRD, since it will enable an estimate to be made of the lensing-induced contribution to the measured total CMB B-modes.
ISSN:0004-6361
1432-0746
DOI:10.1051/0004-6361/201527932