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Planck intermediate results. XXX. The angular power spectrum of polarized dust emission at intermediate and high Galactic latitudes

The polarized thermal emission from Galactic dust is the main foreground present in measurements of the polarization of the cosmic microwave background (CMB) at frequencies above 100GHz. We exploit the Planck HFI polarization data from 100 to 353GHz to measure the dust angular power spectra $C_\ell^...

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Autores principales: Adam, R., Ade, P.A.R., Aghanim, N., Arnaud, M., Aumont, J., Baccigalupi, C., Banday, A.J., Barreiro, R.B., Bartlett, J.G., Bartolo, N., Battaner, E., Benabed, K., Benoit-Levy, A., Bernard, J.P., Bersanelli, M., Bielewicz, P., Bonaldi, A., Bonavera, L., Bond, J.R., Borrill, J., Bouchet, F.R., Boulanger, F., Bracco, A., Bucher, M., Burigana, C., Butler, R.C., Calabrese, E., Cardoso, J.F., Catalano, A., Challinor, A., Chamballu, A., Chary, R.R., Chiang, H.C., Christensen, P.R., Clements, D.L., Colombi, S., Colombo, L.P.L., Combet, C., Couchot, F., Coulais, A., Curto, A., Cuttaia, F., Danese, L., Davies, R.D., Davis, R.J., de Bernardis, P., de Zotti, G., Delabrouille, J., Delouis, J.M., Desert, F.X., Dickinson, C., Diego, J.M., Dolag, K., Dole, H., Donzelli, S., Dore, O., Douspis, M., Ducout, A., Dunkley, J., Dupac, X., Efstathiou, G., Elsner, F., Ensslin, T.A., Eriksen, H.K., Falgarone, E., Finelli, F., Forni, O., Frailis, M., Fraisse, A.A., Franceschi, E., Frejsel, A., Galeotta, S., Galli, S., Ganga, K., Ghosh, T., Giard, M., Giraud-Heraud, Y., Gjerlow, E., Gonzalez-Nuevo, J., Gorski, K.M., Gratton, S., Gregorio, A., Gruppuso, A., Guillet, V., Hansen, F.K., Hanson, D., Harrison, D.L., Helou, G., Henrot-Versille, S., Hernandez-Monteagudo, C., Herranz, D., Hivon, E., Holmes, W.A., Huffenberger, K.M., Hurier, G., Jaffe, A.H., Jaffe, T.R., Jewell, J., Jones, W.C., Juvela, M., Keihanen, E., Keskitalo, R., Kisner, T.S., Kneissl, R., Knoche, J., Knox, L., Krachmalnicoff, N., Kunz, M., Kurki-Suonio, H., Lagache, G., Lamarre, J.M., Lasenby, A., Lattanzi, M., Lawrence, C.R., Leahy, J.P., Leonardi, R., Lesgourgues, J., Levrier, F., Liguori, M., Lilje, P.B., Linden-Vornle, M., Lopez-Caniego, M., Lubin, P.M., Macias-Perez, J.F., Maffei, B., Maino, D., Mandolesi, N., Mangilli, A., Maris, M., Martin, P.G., Martinez-Gonzalez, E., Masi, S., Matarrese, S., Mazzotta, P., Melchiorri, A., Mendes, L., Mennella, A., Migliaccio, M., Mitra, S., Miville-Deschenes, M.A., Moneti, A., Montier, L., Morgante, G., Mortlock, D., Moss, A., Munshi, D., Murphy, J.A., Naselsky, P., Nati, F., Natoli, P., Netterfield, C.B., Norgaard-Nielsen, H.U., Noviello, F., Novikov, D., Novikov, I., Pagano, L., Pajot, F., Paladini, R., Paoletti, D., Partridge, B., Pasian, F., Patanchon, G., Pearson, T.J., Perdereau, O., Perotto, L., Perrotta, F., Pettorino, V., Piacentini, F., Piat, M., Pierpaoli, E., Pietrobon, D., Plaszczynski, S., Pointecouteau, E., Polenta, G., Ponthieu, N., Popa, L., Pratt, G.W., Prunet, S., Puget, J.L., Rachen, J.P., Reach, W.T., Rebolo, R., Remazeilles, M., Renault, C., Renzi, A., Ricciardi, S., Ristorcelli, I., Rocha, G., Rosset, C., Rossetti, M., Roudier, G., d'Orfeuil, B.Rouille, Rubino-Martin, J.A., Rusholme, B., Sandri, M., Santos, D., Savelainen, M., Savini, G., Scott, D., Soler, J.D., Spencer, L.D., Stolyarov, V., Stompor, R., Sudiwala, R., Sunyaev, R., Sutton, D., Suur-Uski, A.S., Sygnet, J.F., Tauber, J.A., Terenzi, L., Tomasi, M., Tristram, M., Tucci, M., Tuovinen, J., Valenziano, L., Valiviita, J., Van Tent, B., Vibert, L., Vielva, P., Villa, F., Wade, L.A., Wandelt, B.D., Watson, R., Wehus, I.K., White, M., White, S.D.M., Yvon, D., Zacchei, A., Zonca, A.
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1051/0004-6361/201425034
http://cds.cern.ch/record/1757020
_version_ 1780943361166802944
author Adam, R.
Ade, P.A.R.
Aghanim, N.
Arnaud, M.
Aumont, J.
Baccigalupi, C.
Banday, A.J.
Barreiro, R.B.
Bartlett, J.G.
Bartolo, N.
Battaner, E.
Benabed, K.
Benoit-Levy, A.
Bernard, J.P.
Bersanelli, M.
Bielewicz, P.
Bonaldi, A.
Bonavera, L.
Bond, J.R.
Borrill, J.
Bouchet, F.R.
Boulanger, F.
Bracco, A.
Bucher, M.
Burigana, C.
Butler, R.C.
Calabrese, E.
Cardoso, J.F.
Catalano, A.
Challinor, A.
Chamballu, A.
Chary, R.R.
Chiang, H.C.
Christensen, P.R.
Clements, D.L.
Colombi, S.
Colombo, L.P.L.
Combet, C.
Couchot, F.
Coulais, A.
Curto, A.
Cuttaia, F.
Danese, L.
Davies, R.D.
Davis, R.J.
de Bernardis, P.
de Zotti, G.
Delabrouille, J.
Delouis, J.M.
Desert, F.X.
Dickinson, C.
Diego, J.M.
Dolag, K.
Dole, H.
Donzelli, S.
Dore, O.
Douspis, M.
Ducout, A.
Dunkley, J.
Dupac, X.
Efstathiou, G.
Elsner, F.
Ensslin, T.A.
Eriksen, H.K.
Falgarone, E.
Finelli, F.
Forni, O.
Frailis, M.
Fraisse, A.A.
Franceschi, E.
Frejsel, A.
Galeotta, S.
Galli, S.
Ganga, K.
Ghosh, T.
Giard, M.
Giraud-Heraud, Y.
Gjerlow, E.
Gonzalez-Nuevo, J.
Gorski, K.M.
Gratton, S.
Gregorio, A.
Gruppuso, A.
Guillet, V.
Hansen, F.K.
Hanson, D.
Harrison, D.L.
Helou, G.
Henrot-Versille, S.
Hernandez-Monteagudo, C.
Herranz, D.
Hivon, E.
Holmes, W.A.
Huffenberger, K.M.
Hurier, G.
Jaffe, A.H.
Jaffe, T.R.
Jewell, J.
Jones, W.C.
Juvela, M.
Keihanen, E.
Keskitalo, R.
Kisner, T.S.
Kneissl, R.
Knoche, J.
Knox, L.
Krachmalnicoff, N.
Kunz, M.
Kurki-Suonio, H.
Lagache, G.
Lamarre, J.M.
Lasenby, A.
Lattanzi, M.
Lawrence, C.R.
Leahy, J.P.
Leonardi, R.
Lesgourgues, J.
Levrier, F.
Liguori, M.
Lilje, P.B.
Linden-Vornle, M.
Lopez-Caniego, M.
Lubin, P.M.
Macias-Perez, J.F.
Maffei, B.
Maino, D.
Mandolesi, N.
Mangilli, A.
Maris, M.
Martin, P.G.
Martinez-Gonzalez, E.
Masi, S.
Matarrese, S.
Mazzotta, P.
Melchiorri, A.
Mendes, L.
Mennella, A.
Migliaccio, M.
Mitra, S.
Miville-Deschenes, M.A.
Moneti, A.
Montier, L.
Morgante, G.
Mortlock, D.
Moss, A.
Munshi, D.
Murphy, J.A.
Naselsky, P.
Nati, F.
Natoli, P.
Netterfield, C.B.
Norgaard-Nielsen, H.U.
Noviello, F.
Novikov, D.
Novikov, I.
Pagano, L.
Pajot, F.
Paladini, R.
Paoletti, D.
Partridge, B.
Pasian, F.
Patanchon, G.
Pearson, T.J.
Perdereau, O.
Perotto, L.
Perrotta, F.
Pettorino, V.
Piacentini, F.
Piat, M.
Pierpaoli, E.
Pietrobon, D.
Plaszczynski, S.
Pointecouteau, E.
Polenta, G.
Ponthieu, N.
Popa, L.
Pratt, G.W.
Prunet, S.
Puget, J.L.
Rachen, J.P.
Reach, W.T.
Rebolo, R.
Remazeilles, M.
Renault, C.
Renzi, A.
Ricciardi, S.
Ristorcelli, I.
Rocha, G.
Rosset, C.
Rossetti, M.
Roudier, G.
d'Orfeuil, B.Rouille
Rubino-Martin, J.A.
Rusholme, B.
Sandri, M.
Santos, D.
Savelainen, M.
Savini, G.
Scott, D.
Soler, J.D.
Spencer, L.D.
Stolyarov, V.
Stompor, R.
Sudiwala, R.
Sunyaev, R.
Sutton, D.
Suur-Uski, A.S.
Sygnet, J.F.
Tauber, J.A.
Terenzi, L.
Tomasi, M.
Tristram, M.
Tucci, M.
Tuovinen, J.
Valenziano, L.
Valiviita, J.
Van Tent, B.
Vibert, L.
Vielva, P.
Villa, F.
Wade, L.A.
Wandelt, B.D.
Watson, R.
Wehus, I.K.
White, M.
White, S.D.M.
Yvon, D.
Zacchei, A.
Zonca, A.
author_facet Adam, R.
Ade, P.A.R.
Aghanim, N.
Arnaud, M.
Aumont, J.
Baccigalupi, C.
Banday, A.J.
Barreiro, R.B.
Bartlett, J.G.
Bartolo, N.
Battaner, E.
Benabed, K.
Benoit-Levy, A.
Bernard, J.P.
Bersanelli, M.
Bielewicz, P.
Bonaldi, A.
Bonavera, L.
Bond, J.R.
Borrill, J.
Bouchet, F.R.
Boulanger, F.
Bracco, A.
Bucher, M.
Burigana, C.
Butler, R.C.
Calabrese, E.
Cardoso, J.F.
Catalano, A.
Challinor, A.
Chamballu, A.
Chary, R.R.
Chiang, H.C.
Christensen, P.R.
Clements, D.L.
Colombi, S.
Colombo, L.P.L.
Combet, C.
Couchot, F.
Coulais, A.
Curto, A.
Cuttaia, F.
Danese, L.
Davies, R.D.
Davis, R.J.
de Bernardis, P.
de Zotti, G.
Delabrouille, J.
Delouis, J.M.
Desert, F.X.
Dickinson, C.
Diego, J.M.
Dolag, K.
Dole, H.
Donzelli, S.
Dore, O.
Douspis, M.
Ducout, A.
Dunkley, J.
Dupac, X.
Efstathiou, G.
Elsner, F.
Ensslin, T.A.
Eriksen, H.K.
Falgarone, E.
Finelli, F.
Forni, O.
Frailis, M.
Fraisse, A.A.
Franceschi, E.
Frejsel, A.
Galeotta, S.
Galli, S.
Ganga, K.
Ghosh, T.
Giard, M.
Giraud-Heraud, Y.
Gjerlow, E.
Gonzalez-Nuevo, J.
Gorski, K.M.
Gratton, S.
Gregorio, A.
Gruppuso, A.
Guillet, V.
Hansen, F.K.
Hanson, D.
Harrison, D.L.
Helou, G.
Henrot-Versille, S.
Hernandez-Monteagudo, C.
Herranz, D.
Hivon, E.
Holmes, W.A.
Huffenberger, K.M.
Hurier, G.
Jaffe, A.H.
Jaffe, T.R.
Jewell, J.
Jones, W.C.
Juvela, M.
Keihanen, E.
Keskitalo, R.
Kisner, T.S.
Kneissl, R.
Knoche, J.
Knox, L.
Krachmalnicoff, N.
Kunz, M.
Kurki-Suonio, H.
Lagache, G.
Lamarre, J.M.
Lasenby, A.
Lattanzi, M.
Lawrence, C.R.
Leahy, J.P.
Leonardi, R.
Lesgourgues, J.
Levrier, F.
Liguori, M.
Lilje, P.B.
Linden-Vornle, M.
Lopez-Caniego, M.
Lubin, P.M.
Macias-Perez, J.F.
Maffei, B.
Maino, D.
Mandolesi, N.
Mangilli, A.
Maris, M.
Martin, P.G.
Martinez-Gonzalez, E.
Masi, S.
Matarrese, S.
Mazzotta, P.
Melchiorri, A.
Mendes, L.
Mennella, A.
Migliaccio, M.
Mitra, S.
Miville-Deschenes, M.A.
Moneti, A.
Montier, L.
Morgante, G.
Mortlock, D.
Moss, A.
Munshi, D.
Murphy, J.A.
Naselsky, P.
Nati, F.
Natoli, P.
Netterfield, C.B.
Norgaard-Nielsen, H.U.
Noviello, F.
Novikov, D.
Novikov, I.
Pagano, L.
Pajot, F.
Paladini, R.
Paoletti, D.
Partridge, B.
Pasian, F.
Patanchon, G.
Pearson, T.J.
Perdereau, O.
Perotto, L.
Perrotta, F.
Pettorino, V.
Piacentini, F.
Piat, M.
Pierpaoli, E.
Pietrobon, D.
Plaszczynski, S.
Pointecouteau, E.
Polenta, G.
Ponthieu, N.
Popa, L.
Pratt, G.W.
Prunet, S.
Puget, J.L.
Rachen, J.P.
Reach, W.T.
Rebolo, R.
Remazeilles, M.
Renault, C.
Renzi, A.
Ricciardi, S.
Ristorcelli, I.
Rocha, G.
Rosset, C.
Rossetti, M.
Roudier, G.
d'Orfeuil, B.Rouille
Rubino-Martin, J.A.
Rusholme, B.
Sandri, M.
Santos, D.
Savelainen, M.
Savini, G.
Scott, D.
Soler, J.D.
Spencer, L.D.
Stolyarov, V.
Stompor, R.
Sudiwala, R.
Sunyaev, R.
Sutton, D.
Suur-Uski, A.S.
Sygnet, J.F.
Tauber, J.A.
Terenzi, L.
Tomasi, M.
Tristram, M.
Tucci, M.
Tuovinen, J.
Valenziano, L.
Valiviita, J.
Van Tent, B.
Vibert, L.
Vielva, P.
Villa, F.
Wade, L.A.
Wandelt, B.D.
Watson, R.
Wehus, I.K.
White, M.
White, S.D.M.
Yvon, D.
Zacchei, A.
Zonca, A.
author_sort Adam, R.
collection CERN
description The polarized thermal emission from Galactic dust is the main foreground present in measurements of the polarization of the cosmic microwave background (CMB) at frequencies above 100GHz. We exploit the Planck HFI polarization data from 100 to 353GHz to measure the dust angular power spectra $C_\ell^{EE,BB}$ over the range $40<\ell<600$. These will bring new insights into interstellar dust physics and a precise determination of the level of contamination for CMB polarization experiments. We show that statistical properties of the emission can be characterized over large fractions of the sky using $C_\ell$. For the dust, they are well described by power laws in $\ell$ with exponents $\alpha^{EE,BB}=-2.42\pm0.02$. The amplitudes of the polarization $C_\ell$ vary with the average brightness in a way similar to the intensity ones. The dust polarization frequency dependence is consistent with modified blackbody emission with $\beta_d=1.59$ and $T_d=19.6$K. We find a systematic ratio between the amplitudes of the Galactic $B$- and $E$-modes of 0.5. We show that even in the faintest dust-emitting regions there are no "clean" windows where primordial CMB $B$-mode polarization could be measured without subtraction of dust emission. Finally, we investigate the level of dust polarization in the BICEP2 experiment field. Extrapolation of the Planck 353GHz data to 150GHz gives a dust power $\ell(\ell+1)C_\ell^{BB}/(2\pi)$ of $1.32\times10^{-2}\mu$K$_{CMB}^2$ over the $40<\ell<120$ range; the statistical uncertainty is $\pm0.29$ and there is an additional uncertainty (+0.28,-0.24) from the extrapolation, both in the same units. This is the same magnitude as reported by BICEP2 over this $\ell$ range, which highlights the need for assessment of the polarized dust signal. The present uncertainties will be reduced through an ongoing, joint analysis of the Planck and BICEP2 data sets.
id cern-1757020
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
record_format invenio
spelling cern-17570202021-11-04T03:06:49Zdoi:10.1051/0004-6361/201425034http://cds.cern.ch/record/1757020engAdam, R.Ade, P.A.R.Aghanim, N.Arnaud, M.Aumont, J.Baccigalupi, C.Banday, A.J.Barreiro, R.B.Bartlett, J.G.Bartolo, N.Battaner, E.Benabed, K.Benoit-Levy, A.Bernard, J.P.Bersanelli, M.Bielewicz, P.Bonaldi, A.Bonavera, L.Bond, J.R.Borrill, J.Bouchet, F.R.Boulanger, F.Bracco, A.Bucher, M.Burigana, C.Butler, R.C.Calabrese, E.Cardoso, J.F.Catalano, A.Challinor, A.Chamballu, A.Chary, R.R.Chiang, H.C.Christensen, P.R.Clements, D.L.Colombi, S.Colombo, L.P.L.Combet, C.Couchot, F.Coulais, A.Curto, A.Cuttaia, F.Danese, L.Davies, R.D.Davis, R.J.de Bernardis, P.de Zotti, G.Delabrouille, J.Delouis, J.M.Desert, F.X.Dickinson, C.Diego, J.M.Dolag, K.Dole, H.Donzelli, S.Dore, O.Douspis, M.Ducout, A.Dunkley, J.Dupac, X.Efstathiou, G.Elsner, F.Ensslin, T.A.Eriksen, H.K.Falgarone, E.Finelli, F.Forni, O.Frailis, M.Fraisse, A.A.Franceschi, E.Frejsel, A.Galeotta, S.Galli, S.Ganga, K.Ghosh, T.Giard, M.Giraud-Heraud, Y.Gjerlow, E.Gonzalez-Nuevo, J.Gorski, K.M.Gratton, S.Gregorio, A.Gruppuso, A.Guillet, V.Hansen, F.K.Hanson, D.Harrison, D.L.Helou, G.Henrot-Versille, S.Hernandez-Monteagudo, C.Herranz, D.Hivon, E.Holmes, W.A.Huffenberger, K.M.Hurier, G.Jaffe, A.H.Jaffe, T.R.Jewell, J.Jones, W.C.Juvela, M.Keihanen, E.Keskitalo, R.Kisner, T.S.Kneissl, R.Knoche, J.Knox, L.Krachmalnicoff, N.Kunz, M.Kurki-Suonio, H.Lagache, G.Lamarre, J.M.Lasenby, A.Lattanzi, M.Lawrence, C.R.Leahy, J.P.Leonardi, R.Lesgourgues, J.Levrier, F.Liguori, M.Lilje, P.B.Linden-Vornle, M.Lopez-Caniego, M.Lubin, P.M.Macias-Perez, J.F.Maffei, B.Maino, D.Mandolesi, N.Mangilli, A.Maris, M.Martin, P.G.Martinez-Gonzalez, E.Masi, S.Matarrese, S.Mazzotta, P.Melchiorri, A.Mendes, L.Mennella, A.Migliaccio, M.Mitra, S.Miville-Deschenes, M.A.Moneti, A.Montier, L.Morgante, G.Mortlock, D.Moss, A.Munshi, D.Murphy, J.A.Naselsky, P.Nati, F.Natoli, P.Netterfield, C.B.Norgaard-Nielsen, H.U.Noviello, F.Novikov, D.Novikov, I.Pagano, L.Pajot, F.Paladini, R.Paoletti, D.Partridge, B.Pasian, F.Patanchon, G.Pearson, T.J.Perdereau, O.Perotto, L.Perrotta, F.Pettorino, V.Piacentini, F.Piat, M.Pierpaoli, E.Pietrobon, D.Plaszczynski, S.Pointecouteau, E.Polenta, G.Ponthieu, N.Popa, L.Pratt, G.W.Prunet, S.Puget, J.L.Rachen, J.P.Reach, W.T.Rebolo, R.Remazeilles, M.Renault, C.Renzi, A.Ricciardi, S.Ristorcelli, I.Rocha, G.Rosset, C.Rossetti, M.Roudier, G.d'Orfeuil, B.RouilleRubino-Martin, J.A.Rusholme, B.Sandri, M.Santos, D.Savelainen, M.Savini, G.Scott, D.Soler, J.D.Spencer, L.D.Stolyarov, V.Stompor, R.Sudiwala, R.Sunyaev, R.Sutton, D.Suur-Uski, A.S.Sygnet, J.F.Tauber, J.A.Terenzi, L.Tomasi, M.Tristram, M.Tucci, M.Tuovinen, J.Valenziano, L.Valiviita, J.Van Tent, B.Vibert, L.Vielva, P.Villa, F.Wade, L.A.Wandelt, B.D.Watson, R.Wehus, I.K.White, M.White, S.D.M.Yvon, D.Zacchei, A.Zonca, A.Planck intermediate results. XXX. The angular power spectrum of polarized dust emission at intermediate and high Galactic latitudesAstrophysics and AstronomyThe polarized thermal emission from Galactic dust is the main foreground present in measurements of the polarization of the cosmic microwave background (CMB) at frequencies above 100GHz. We exploit the Planck HFI polarization data from 100 to 353GHz to measure the dust angular power spectra $C_\ell^{EE,BB}$ over the range $40<\ell<600$. These will bring new insights into interstellar dust physics and a precise determination of the level of contamination for CMB polarization experiments. We show that statistical properties of the emission can be characterized over large fractions of the sky using $C_\ell$. For the dust, they are well described by power laws in $\ell$ with exponents $\alpha^{EE,BB}=-2.42\pm0.02$. The amplitudes of the polarization $C_\ell$ vary with the average brightness in a way similar to the intensity ones. The dust polarization frequency dependence is consistent with modified blackbody emission with $\beta_d=1.59$ and $T_d=19.6$K. We find a systematic ratio between the amplitudes of the Galactic $B$- and $E$-modes of 0.5. We show that even in the faintest dust-emitting regions there are no "clean" windows where primordial CMB $B$-mode polarization could be measured without subtraction of dust emission. Finally, we investigate the level of dust polarization in the BICEP2 experiment field. Extrapolation of the Planck 353GHz data to 150GHz gives a dust power $\ell(\ell+1)C_\ell^{BB}/(2\pi)$ of $1.32\times10^{-2}\mu$K$_{CMB}^2$ over the $40<\ell<120$ range; the statistical uncertainty is $\pm0.29$ and there is an additional uncertainty (+0.28,-0.24) from the extrapolation, both in the same units. This is the same magnitude as reported by BICEP2 over this $\ell$ range, which highlights the need for assessment of the polarized dust signal. The present uncertainties will be reduced through an ongoing, joint analysis of the Planck and BICEP2 data sets.The polarized thermal emission from diffuse Galactic dust is the main foreground presentin measurements of the polarization of the cosmic microwave background (CMB) atfrequencies above 100GHz. In this paper we exploit the uniqueness of thePlanck HFI polarization data from 100 to 353GHz to measure thepolarized dust angular power spectra C_l^EE and C_l^BB over themultipole range 40 well away from the Galactic plane. These measurements will bringnew insights into interstellar dust physics and allow a precise determination of the levelof contamination for CMB polarization experiments. Despite the non-Gaussian andanisotropic nature of Galactic dust, we show that general statistical properties of theemission can be characterized accurately over large fractions of the sky using angularpower spectra. The polarization power spectra of the dust are well described by power lawsin multipole, C_l ∝l^alpha, with exponentsalpha^EE,BB = -2.42 +- 0.02.The amplitudes of the polarization power spectra vary with the average brightness in a waysimilar to the intensity power spectra. The frequency dependence of the dust polarizationspectra is consistent with modified blackbody emission with beta_d = 1.59 andT_d = 19.6K down to the lowest Planck HFI frequencies. We find asystematic difference between the amplitudes of the Galactic B- and E-modes, C_l^BB/C_l^EE =0.5. We verify that these general properties are preserved towards highGalactic latitudes with low dust column densities. We show that even in the faintestdust-emitting regions there are no 'clean' windows in the sky where primordial CMBB-modepolarization measurements could be made without subtraction of foreground emission.Finally, we investigate the level of dust polarization in the specific field recentlytargeted by the BICEP2 experiment. Extrapolation of the Planck 353GHzdata to 150GHz gives a dust power 𝒟_l^BB =l(l+1)C_l^BB/(2pi) of 1.32 x 10^-2muK_CMB^2 over the multipole rangeof the primordial recombination bump (40); the statistical uncertainty is+- 0.29 x 10^-2muK_CMB^2 and there is anadditional uncertainty (+0.28, -0.24) x10^-2muK_CMB^2 from the extrapolation.This level is the same magnitude as reported by BICEP2 over this l range, which highlightsthe need for assessment of the polarized dust signal even in the cleanest windows of thesky.The polarized thermal emission from Galactic dust is the main foreground present in measurements of the polarization of the cosmic microwave background (CMB) at frequencies above 100GHz. We exploit the Planck HFI polarization data from 100 to 353GHz to measure the dust angular power spectra $C_\ell^{EE,BB}$ over the range $40<\ell<600$ well away from the Galactic plane. These will bring new insights into interstellar dust physics and a precise determination of the level of contamination for CMB polarization experiments. We show that statistical properties of the emission can be characterized over large fractions of the sky using $C_\ell$. For the dust, they are well described by power laws in $\ell$ with exponents $\alpha^{EE,BB}=-2.42\pm0.02$. The amplitudes of the polarization $C_\ell$ vary with the average brightness in a way similar to the intensity ones. The dust polarization frequency dependence is consistent with modified blackbody emission with $\beta_d=1.59$ and $T_d=19.6$K. We find a systematic ratio between the amplitudes of the Galactic $B$- and $E$-modes of 0.5. We show that even in the faintest dust-emitting regions there are no "clean" windows where primordial CMB $B$-mode polarization could be measured without subtraction of dust emission. Finally, we investigate the level of dust polarization in the BICEP2 experiment field. Extrapolation of the Planck 353GHz data to 150GHz gives a dust power $\ell(\ell+1)C_\ell^{BB}/(2\pi)$ of $1.32\times10^{-2}\mu$K$_{CMB}^2$ over the $40<\ell<120$ range; the statistical uncertainty is $\pm0.29$ and there is an additional uncertainty (+0.28,-0.24) from the extrapolation, both in the same units. This is the same magnitude as reported by BICEP2 over this $\ell$ range, which highlights the need for assessment of the polarized dust signal even in the cleanest windows of the sky.arXiv:1409.5738oai:cds.cern.ch:17570202014-09-19
spellingShingle Astrophysics and Astronomy
Adam, R.
Ade, P.A.R.
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Kisner, T.S.
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Yvon, D.
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Zonca, A.
Planck intermediate results. XXX. The angular power spectrum of polarized dust emission at intermediate and high Galactic latitudes
title Planck intermediate results. XXX. The angular power spectrum of polarized dust emission at intermediate and high Galactic latitudes
title_full Planck intermediate results. XXX. The angular power spectrum of polarized dust emission at intermediate and high Galactic latitudes
title_fullStr Planck intermediate results. XXX. The angular power spectrum of polarized dust emission at intermediate and high Galactic latitudes
title_full_unstemmed Planck intermediate results. XXX. The angular power spectrum of polarized dust emission at intermediate and high Galactic latitudes
title_short Planck intermediate results. XXX. The angular power spectrum of polarized dust emission at intermediate and high Galactic latitudes
title_sort planck intermediate results. xxx. the angular power spectrum of polarized dust emission at intermediate and high galactic latitudes
topic Astrophysics and Astronomy
url https://dx.doi.org/10.1051/0004-6361/201425034
http://cds.cern.ch/record/1757020
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AT morganteg planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT mortlockd planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT mossa planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT munshid planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT murphyja planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT naselskyp planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT natif planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT natolip planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT netterfieldcb planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT norgaardnielsenhu planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT noviellof planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT novikovd planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT novikovi planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT paganol planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT pajotf planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT paladinir planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT paolettid planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT partridgeb planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT pasianf planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT patanchong planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT pearsontj planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT perdereauo planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT perottol planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT perrottaf planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT pettorinov planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT piacentinif planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT piatm planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT pierpaolie planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT pietrobond planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT plaszczynskis planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT pointecouteaue planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT polentag planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT ponthieun planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT popal planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT prattgw planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT prunets planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT pugetjl planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT rachenjp planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT reachwt planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT rebolor planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT remazeillesm planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT renaultc planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT renzia planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT ricciardis planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT ristorcellii planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT rochag planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT rossetc planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT rossettim planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT roudierg planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT dorfeuilbrouille planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT rubinomartinja planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT rusholmeb planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT sandrim planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT santosd planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT savelainenm planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT savinig planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT scottd planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT solerjd planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT spencerld planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT stolyarovv planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT stomporr planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT sudiwalar planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT sunyaevr planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT suttond planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT suuruskias planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT sygnetjf planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT tauberja planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT terenzil planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT tomasim planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT tristramm planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT tuccim planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT tuovinenj planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT valenzianol planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT valiviitaj planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT vantentb planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT vibertl planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT vielvap planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT villaf planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT wadela planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT wandeltbd planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT watsonr planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT wehusik planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT whitem planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT whitesdm planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT yvond planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT zaccheia planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes
AT zoncaa planckintermediateresultsxxxtheangularpowerspectrumofpolarizeddustemissionatintermediateandhighgalacticlatitudes