Cargando…
Planck 2015 results. XVI. Isotropy and statistics of the CMB
We test the statistical isotropy and Gaussianity of the cosmic microwave background (CMB) anisotropies using observations made by the Planck satellite. Our results are based mainly on the full Planck mission for temperature, but also include some polarization measurements. In particular, we consider...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
---|---|
Lenguaje: | eng |
Publicado: |
2015
|
Materias: | |
Acceso en línea: | https://dx.doi.org/10.1051/0004-6361/201526681 http://cds.cern.ch/record/2028260 |
_version_ | 1780947360563593216 |
---|---|
author | Ade, P.A.R. Aghanim, N. Akrami, Y. Aluri, P.K. Arnaud, M. Ashdown, M. Aumont, J. Baccigalupi, C. Banday, A.J. Barreiro, R.B. Bartolo, N. Basak, S. Battaner, E. Benabed, K. Benoit, A. Benoit-Levy, A. Bernard, J.P. Bersanelli, M. Bielewicz, P. Bock, J.J. Bonaldi, A. Bonavera, L. Bond, J.R. Borrill, J. Bouchet, F.R. Boulanger, F. Bucher, M. Burigana, C. Butler, R.C. Calabrese, E. Cardoso, J.F. Casaponsa, B. Catalano, A. Challinor, A. Chamballu, A. Chiang, H.C. Christensen, P.R. Church, S. Clements, D.L. Colombi, S. Colombo, L.P.L. Combet, C. Contreras, D. Couchot, F. Coulais, A. Crill, B.P. Cruz, M. Curto, A. Cuttaia, F. Danese, L. Davies, R.D. Davis, R.J. de Bernardis, P. de Rosa, A. de Zotti, G. Delabrouille, J. Desert, F.X. Diego, J.M. Dole, H. Donzelli, S. Dore, O. Douspis, M. Ducout, A. Dupac, X. Efstathiou, G. Elsner, F. Ensslin, T.A. Eriksen, H.K. Fantaye, Y. Fergusson, J. Fernandez-Cobos, R. Finelli, F. Forni, O. Frailis, M. Fraisse, A.A. Franceschi, E. Frejsel, A. Frolov, A. Galeotta, S. Galli, S. Ganga, K. Gauthier, C. Ghosh, T. Giard, M. Giraud-Heraud, Y. Gjerlow, E. Gonzalez-Nuevo, J. Gorski, K.M. Gratton, S. Gregorio, A. Gruppuso, A. Gudmundsson, J.E. Hansen, F.K. Hanson, D. Harrison, D.L. Henrot-Versille, S. Hernandez-Monteagudo, C. Herranz, D. Hildebrandt, S.R. Hivon, E. Hobson, M. Holmes, W.A. Hornstrup, A. Hovest, W. Huang, Z. Huffenberger, K.M. Hurier, G. Jaffe, A.H. Jaffe, T.R. Jones, W.C. Juvela, M. Keihanen, E. Keskitalo, R. Kim, J. Kisner, T.S. Knoche, J. Kunz, M. Kurki-Suonio, H. Lagache, G. Lahteenmaki, A. Lamarre, J.M. Lasenby, A. Lattanzi, M. Lawrence, C.R. Leonardi, R. Lesgourgues, J. Levrier, F. Liguori, M. Lilje, P.B. Linden-Vornle, M. Liu, H. Lopez-Caniego, M. Lubin, P.M. Macias-Perez, J.F. Maggio, G. Maino, D. Mandolesi, N. Mangilli, A. Marinucci, D. Maris, M. Martin, P.G. Martinez-Gonzalez, E. Masi, S. Matarrese, S. McGehee, P. Meinhold, P.R. Melchiorri, A. Mendes, L. Mennella, A. Migliaccio, M. Mikkelsen, K. Mitra, S. Miville-Deschenes, M.A. Molinari, D. 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. Oxborrow, C.A. Paci, F. Pagano, L. Pajot, F. Pant, N. Paoletti, D. 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. Popa, L. Pratt, G.W. Prezeau, G. Prunet, S. Puget, J.L. Rachen, J.P. Rebolo, R. Reinecke, M. Remazeilles, M. Renault, C. Renzi, A. Ristorcelli, I. Rocha, G. Rosset, C. Rossetti, M. Rotti, A. Roudier, G. Rubino-Martin, J.A. Rusholme, B. Sandri, M. Santos, D. Savelainen, M. Savini, G. Scott, D. Seiffert, M.D. Shellard, E.P.S. Souradeep, T. 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. Toffolatti, L. Tomasi, M. Tristram, M. Trombetti, T. Tucci, M. Tuovinen, J. Valenziano, L. Valiviita, J. Van Tent, B. Vielva, P. Villa, F. Wade, L.A. Wandelt, B.D. Wehus, I.K. Yvon, D. Zacchei, A. Zibin, J.P. Zonca, A. |
author_facet | Ade, P.A.R. Aghanim, N. Akrami, Y. Aluri, P.K. Arnaud, M. Ashdown, M. Aumont, J. Baccigalupi, C. Banday, A.J. Barreiro, R.B. Bartolo, N. Basak, S. Battaner, E. Benabed, K. Benoit, A. Benoit-Levy, A. Bernard, J.P. Bersanelli, M. Bielewicz, P. Bock, J.J. Bonaldi, A. Bonavera, L. Bond, J.R. Borrill, J. Bouchet, F.R. Boulanger, F. Bucher, M. Burigana, C. Butler, R.C. Calabrese, E. Cardoso, J.F. Casaponsa, B. Catalano, A. Challinor, A. Chamballu, A. Chiang, H.C. Christensen, P.R. Church, S. Clements, D.L. Colombi, S. Colombo, L.P.L. Combet, C. Contreras, D. Couchot, F. Coulais, A. Crill, B.P. Cruz, M. Curto, A. Cuttaia, F. Danese, L. Davies, R.D. Davis, R.J. de Bernardis, P. de Rosa, A. de Zotti, G. Delabrouille, J. Desert, F.X. Diego, J.M. Dole, H. Donzelli, S. Dore, O. Douspis, M. Ducout, A. Dupac, X. Efstathiou, G. Elsner, F. Ensslin, T.A. Eriksen, H.K. Fantaye, Y. Fergusson, J. Fernandez-Cobos, R. Finelli, F. Forni, O. Frailis, M. Fraisse, A.A. Franceschi, E. Frejsel, A. Frolov, A. Galeotta, S. Galli, S. Ganga, K. Gauthier, C. Ghosh, T. Giard, M. Giraud-Heraud, Y. Gjerlow, E. Gonzalez-Nuevo, J. Gorski, K.M. Gratton, S. Gregorio, A. Gruppuso, A. Gudmundsson, J.E. Hansen, F.K. Hanson, D. Harrison, D.L. Henrot-Versille, S. Hernandez-Monteagudo, C. Herranz, D. Hildebrandt, S.R. Hivon, E. Hobson, M. Holmes, W.A. Hornstrup, A. Hovest, W. Huang, Z. Huffenberger, K.M. Hurier, G. Jaffe, A.H. Jaffe, T.R. Jones, W.C. Juvela, M. Keihanen, E. Keskitalo, R. Kim, J. Kisner, T.S. Knoche, J. Kunz, M. Kurki-Suonio, H. Lagache, G. Lahteenmaki, A. Lamarre, J.M. Lasenby, A. Lattanzi, M. Lawrence, C.R. Leonardi, R. Lesgourgues, J. Levrier, F. Liguori, M. Lilje, P.B. Linden-Vornle, M. Liu, H. Lopez-Caniego, M. Lubin, P.M. Macias-Perez, J.F. Maggio, G. Maino, D. Mandolesi, N. Mangilli, A. Marinucci, D. Maris, M. Martin, P.G. Martinez-Gonzalez, E. Masi, S. Matarrese, S. McGehee, P. Meinhold, P.R. Melchiorri, A. Mendes, L. Mennella, A. Migliaccio, M. Mikkelsen, K. Mitra, S. Miville-Deschenes, M.A. Molinari, D. 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. Oxborrow, C.A. Paci, F. Pagano, L. Pajot, F. Pant, N. Paoletti, D. 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. Popa, L. Pratt, G.W. Prezeau, G. Prunet, S. Puget, J.L. Rachen, J.P. Rebolo, R. Reinecke, M. Remazeilles, M. Renault, C. Renzi, A. Ristorcelli, I. Rocha, G. Rosset, C. Rossetti, M. Rotti, A. Roudier, G. Rubino-Martin, J.A. Rusholme, B. Sandri, M. Santos, D. Savelainen, M. Savini, G. Scott, D. Seiffert, M.D. Shellard, E.P.S. Souradeep, T. 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. Toffolatti, L. Tomasi, M. Tristram, M. Trombetti, T. Tucci, M. Tuovinen, J. Valenziano, L. Valiviita, J. Van Tent, B. Vielva, P. Villa, F. Wade, L.A. Wandelt, B.D. Wehus, I.K. Yvon, D. Zacchei, A. Zibin, J.P. Zonca, A. |
author_sort | Ade, P.A.R. |
collection | CERN |
description | We test the statistical isotropy and Gaussianity of the cosmic microwave background (CMB) anisotropies using observations made by the Planck satellite. Our results are based mainly on the full Planck mission for temperature, but also include some polarization measurements. In particular, we consider the CMB anisotropy maps derived from the multi-frequency Planck data by several component-separation methods. For the temperature anisotropies, we find excellent agreement between results based on these sky maps over both a very large fraction of the sky and a broad range of angular scales, establishing that potential foreground residuals do not affect our studies. Tests of skewness, kurtosis, multi-normality, N-point functions, and Minkowski functionals indicate consistency with Gaussianity, while a power deficit at large angular scales is manifested in several ways, for example low map variance. The results of a peak statistics analysis are consistent with the expectations of a Gaussian random field. The "Cold Spot" is detected with several methods, including map kurtosis, peak statistics, and mean temperature profile. We thoroughly probe the large-scale dipolar power asymmetry, detecting it with several independent tests, and address the subject of a posteriori correction. Tests of directionality suggest the presence of angular clustering from large to small scales, but at a significance that is dependent on the details of the approach. We perform the first examination of polarization data, finding the morphology of stacked peaks to be consistent with the expectations of statistically isotropic simulations. Where they overlap, these results are consistent with the Planck 2013 analysis based on the nominal mission data and provide our most thorough view of the statistics of the CMB fluctuations to date. |
id | cern-2028260 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2015 |
record_format | invenio |
spelling | cern-20282602023-06-13T02:56:40Zdoi:10.1051/0004-6361/201526681http://cds.cern.ch/record/2028260engAde, P.A.R.Aghanim, N.Akrami, Y.Aluri, P.K.Arnaud, M.Ashdown, M.Aumont, J.Baccigalupi, C.Banday, A.J.Barreiro, R.B.Bartolo, N.Basak, S.Battaner, E.Benabed, K.Benoit, A.Benoit-Levy, A.Bernard, J.P.Bersanelli, M.Bielewicz, P.Bock, J.J.Bonaldi, A.Bonavera, L.Bond, J.R.Borrill, J.Bouchet, F.R.Boulanger, F.Bucher, M.Burigana, C.Butler, R.C.Calabrese, E.Cardoso, J.F.Casaponsa, B.Catalano, A.Challinor, A.Chamballu, A.Chiang, H.C.Christensen, P.R.Church, S.Clements, D.L.Colombi, S.Colombo, L.P.L.Combet, C.Contreras, D.Couchot, F.Coulais, A.Crill, B.P.Cruz, M.Curto, A.Cuttaia, F.Danese, L.Davies, R.D.Davis, R.J.de Bernardis, P.de Rosa, A.de Zotti, G.Delabrouille, J.Desert, F.X.Diego, J.M.Dole, H.Donzelli, S.Dore, O.Douspis, M.Ducout, A.Dupac, X.Efstathiou, G.Elsner, F.Ensslin, T.A.Eriksen, H.K.Fantaye, Y.Fergusson, J.Fernandez-Cobos, R.Finelli, F.Forni, O.Frailis, M.Fraisse, A.A.Franceschi, E.Frejsel, A.Frolov, A.Galeotta, S.Galli, S.Ganga, K.Gauthier, C.Ghosh, T.Giard, M.Giraud-Heraud, Y.Gjerlow, E.Gonzalez-Nuevo, J.Gorski, K.M.Gratton, S.Gregorio, A.Gruppuso, A.Gudmundsson, J.E.Hansen, F.K.Hanson, D.Harrison, D.L.Henrot-Versille, S.Hernandez-Monteagudo, C.Herranz, D.Hildebrandt, S.R.Hivon, E.Hobson, M.Holmes, W.A.Hornstrup, A.Hovest, W.Huang, Z.Huffenberger, K.M.Hurier, G.Jaffe, A.H.Jaffe, T.R.Jones, W.C.Juvela, M.Keihanen, E.Keskitalo, R.Kim, J.Kisner, T.S.Knoche, J.Kunz, M.Kurki-Suonio, H.Lagache, G.Lahteenmaki, A.Lamarre, J.M.Lasenby, A.Lattanzi, M.Lawrence, C.R.Leonardi, R.Lesgourgues, J.Levrier, F.Liguori, M.Lilje, P.B.Linden-Vornle, M.Liu, H.Lopez-Caniego, M.Lubin, P.M.Macias-Perez, J.F.Maggio, G.Maino, D.Mandolesi, N.Mangilli, A.Marinucci, D.Maris, M.Martin, P.G.Martinez-Gonzalez, E.Masi, S.Matarrese, S.McGehee, P.Meinhold, P.R.Melchiorri, A.Mendes, L.Mennella, A.Migliaccio, M.Mikkelsen, K.Mitra, S.Miville-Deschenes, M.A.Molinari, D.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.Oxborrow, C.A.Paci, F.Pagano, L.Pajot, F.Pant, N.Paoletti, D.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.Popa, L.Pratt, G.W.Prezeau, G.Prunet, S.Puget, J.L.Rachen, J.P.Rebolo, R.Reinecke, M.Remazeilles, M.Renault, C.Renzi, A.Ristorcelli, I.Rocha, G.Rosset, C.Rossetti, M.Rotti, A.Roudier, G.Rubino-Martin, J.A.Rusholme, B.Sandri, M.Santos, D.Savelainen, M.Savini, G.Scott, D.Seiffert, M.D.Shellard, E.P.S.Souradeep, T.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.Toffolatti, L.Tomasi, M.Tristram, M.Trombetti, T.Tucci, M.Tuovinen, J.Valenziano, L.Valiviita, J.Van Tent, B.Vielva, P.Villa, F.Wade, L.A.Wandelt, B.D.Wehus, I.K.Yvon, D.Zacchei, A.Zibin, J.P.Zonca, A.Planck 2015 results. XVI. Isotropy and statistics of the CMBAstrophysics and AstronomyWe test the statistical isotropy and Gaussianity of the cosmic microwave background (CMB) anisotropies using observations made by the Planck satellite. Our results are based mainly on the full Planck mission for temperature, but also include some polarization measurements. In particular, we consider the CMB anisotropy maps derived from the multi-frequency Planck data by several component-separation methods. For the temperature anisotropies, we find excellent agreement between results based on these sky maps over both a very large fraction of the sky and a broad range of angular scales, establishing that potential foreground residuals do not affect our studies. Tests of skewness, kurtosis, multi-normality, N-point functions, and Minkowski functionals indicate consistency with Gaussianity, while a power deficit at large angular scales is manifested in several ways, for example low map variance. The results of a peak statistics analysis are consistent with the expectations of a Gaussian random field. The "Cold Spot" is detected with several methods, including map kurtosis, peak statistics, and mean temperature profile. We thoroughly probe the large-scale dipolar power asymmetry, detecting it with several independent tests, and address the subject of a posteriori correction. Tests of directionality suggest the presence of angular clustering from large to small scales, but at a significance that is dependent on the details of the approach. We perform the first examination of polarization data, finding the morphology of stacked peaks to be consistent with the expectations of statistically isotropic simulations. Where they overlap, these results are consistent with the Planck 2013 analysis based on the nominal mission data and provide our most thorough view of the statistics of the CMB fluctuations to date.We test the statistical isotropy and Gaussianity of the cosmic microwave background (CMB) anisotropies using observations made by the Planck satellite. Our results are based mainly on the full Planck mission for temperature, but also include some polarization measurements. In particular, we consider the CMB anisotropy maps derived from the multi-frequency Planck data by several component-separation methods. For the temperature anisotropies, we find excellent agreement between results based on these sky maps over both a very large fraction of the sky and a broad range of angular scales, establishing that potential foreground residuals do not affect our studies. Tests of skewness, kurtosis, multi-normality, N-point functions, and Minkowski functionals indicate consistency with Gaussianity, while a power deficit at large angular scales is manifested in several ways, for example low map variance. The results of a peak statistics analysis are consistent with the expectations of a Gaussian random field. The 'Cold Spot' is detected with several methods, including map kurtosis, peak statistics, and mean temperature profile. We thoroughly probe the large-scale dipolar power asymmetry, detecting it with several independent tests, and address the subject of a posteriori correction. Tests of directionality suggest the presence of angular clustering from large to small scales, but at a significance that is dependent on the details of the approach. We perform the first examination of polarization data, finding the morphology of stacked peaks to be consistent with the expectations of statistically isotropic simulations. Where they overlap, these results are consistent with the Planck 2013 analysis based on the nominal mission data and provide our most thorough view of the statistics of the CMB fluctuations to date.We test the statistical isotropy and Gaussianity of the cosmic microwave background (CMB) anisotropies using observations made by the Planck satellite. Our results are based mainly on the full Planck mission for temperature, but also include some polarization measurements. In particular, we consider the CMB anisotropy maps derived from the multi-frequency Planck data by several component-separation methods. For the temperature anisotropies, we find excellent agreement between results based on these sky maps over both a very large fraction of the sky and a broad range of angular scales, establishing that potential foreground residuals do not affect our studies. Tests of skewness, kurtosis, multi-normality, N-point functions, and Minkowski functionals indicate consistency with Gaussianity, while a power deficit at large angular scales is manifested in several ways, for example low map variance. The results of a peak statistics analysis are consistent with the expectations of a Gaussian random field. The "Cold Spot" is detected with several methods, including map kurtosis, peak statistics, and mean temperature profile. We thoroughly probe the large-scale dipolar power asymmetry, detecting it with several independent tests, and address the subject of a posteriori correction. Tests of directionality suggest the presence of angular clustering from large to small scales, but at a significance that is dependent on the details of the approach. We perform the first examination of polarization data, finding the morphology of stacked peaks to be consistent with the expectations of statistically isotropic simulations. Where they overlap, these results are consistent with the Planck 2013 analysis based on the nominal mission data and provide our most thorough view of the statistics of the CMB fluctuations to date.arXiv:1506.07135oai:cds.cern.ch:20282602015-06-23 |
spellingShingle | Astrophysics and Astronomy Ade, P.A.R. Aghanim, N. Akrami, Y. Aluri, P.K. Arnaud, M. Ashdown, M. Aumont, J. Baccigalupi, C. Banday, A.J. Barreiro, R.B. Bartolo, N. Basak, S. Battaner, E. Benabed, K. Benoit, A. Benoit-Levy, A. Bernard, J.P. Bersanelli, M. Bielewicz, P. Bock, J.J. Bonaldi, A. Bonavera, L. Bond, J.R. Borrill, J. Bouchet, F.R. Boulanger, F. Bucher, M. Burigana, C. Butler, R.C. Calabrese, E. Cardoso, J.F. Casaponsa, B. Catalano, A. Challinor, A. Chamballu, A. Chiang, H.C. Christensen, P.R. Church, S. Clements, D.L. Colombi, S. Colombo, L.P.L. Combet, C. Contreras, D. Couchot, F. Coulais, A. Crill, B.P. Cruz, M. Curto, A. Cuttaia, F. Danese, L. Davies, R.D. Davis, R.J. de Bernardis, P. de Rosa, A. de Zotti, G. Delabrouille, J. Desert, F.X. Diego, J.M. Dole, H. Donzelli, S. Dore, O. Douspis, M. Ducout, A. Dupac, X. Efstathiou, G. Elsner, F. Ensslin, T.A. Eriksen, H.K. Fantaye, Y. Fergusson, J. Fernandez-Cobos, R. Finelli, F. Forni, O. Frailis, M. Fraisse, A.A. Franceschi, E. Frejsel, A. Frolov, A. Galeotta, S. Galli, S. Ganga, K. Gauthier, C. Ghosh, T. Giard, M. Giraud-Heraud, Y. Gjerlow, E. Gonzalez-Nuevo, J. Gorski, K.M. Gratton, S. Gregorio, A. Gruppuso, A. Gudmundsson, J.E. Hansen, F.K. Hanson, D. Harrison, D.L. Henrot-Versille, S. Hernandez-Monteagudo, C. Herranz, D. Hildebrandt, S.R. Hivon, E. Hobson, M. Holmes, W.A. Hornstrup, A. Hovest, W. Huang, Z. Huffenberger, K.M. Hurier, G. Jaffe, A.H. Jaffe, T.R. Jones, W.C. Juvela, M. Keihanen, E. Keskitalo, R. Kim, J. Kisner, T.S. Knoche, J. Kunz, M. Kurki-Suonio, H. Lagache, G. Lahteenmaki, A. Lamarre, J.M. Lasenby, A. Lattanzi, M. Lawrence, C.R. Leonardi, R. Lesgourgues, J. Levrier, F. Liguori, M. Lilje, P.B. Linden-Vornle, M. Liu, H. Lopez-Caniego, M. Lubin, P.M. Macias-Perez, J.F. Maggio, G. Maino, D. Mandolesi, N. Mangilli, A. Marinucci, D. Maris, M. Martin, P.G. Martinez-Gonzalez, E. Masi, S. Matarrese, S. McGehee, P. Meinhold, P.R. Melchiorri, A. Mendes, L. Mennella, A. Migliaccio, M. Mikkelsen, K. Mitra, S. Miville-Deschenes, M.A. Molinari, D. 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. Oxborrow, C.A. Paci, F. Pagano, L. Pajot, F. Pant, N. Paoletti, D. 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. Popa, L. Pratt, G.W. Prezeau, G. Prunet, S. Puget, J.L. Rachen, J.P. Rebolo, R. Reinecke, M. Remazeilles, M. Renault, C. Renzi, A. Ristorcelli, I. Rocha, G. Rosset, C. Rossetti, M. Rotti, A. Roudier, G. Rubino-Martin, J.A. Rusholme, B. Sandri, M. Santos, D. Savelainen, M. Savini, G. Scott, D. Seiffert, M.D. Shellard, E.P.S. Souradeep, T. 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. Toffolatti, L. Tomasi, M. Tristram, M. Trombetti, T. Tucci, M. Tuovinen, J. Valenziano, L. Valiviita, J. Van Tent, B. Vielva, P. Villa, F. Wade, L.A. Wandelt, B.D. Wehus, I.K. Yvon, D. Zacchei, A. Zibin, J.P. Zonca, A. Planck 2015 results. XVI. Isotropy and statistics of the CMB |
title | Planck 2015 results. XVI. Isotropy and statistics of the CMB |
title_full | Planck 2015 results. XVI. Isotropy and statistics of the CMB |
title_fullStr | Planck 2015 results. XVI. Isotropy and statistics of the CMB |
title_full_unstemmed | Planck 2015 results. XVI. Isotropy and statistics of the CMB |
title_short | Planck 2015 results. XVI. Isotropy and statistics of the CMB |
title_sort | planck 2015 results. xvi. isotropy and statistics of the cmb |
topic | Astrophysics and Astronomy |
url | https://dx.doi.org/10.1051/0004-6361/201526681 http://cds.cern.ch/record/2028260 |
work_keys_str_mv | AT adepar planck2015resultsxviisotropyandstatisticsofthecmb AT aghanimn planck2015resultsxviisotropyandstatisticsofthecmb AT akramiy planck2015resultsxviisotropyandstatisticsofthecmb AT aluripk planck2015resultsxviisotropyandstatisticsofthecmb AT arnaudm planck2015resultsxviisotropyandstatisticsofthecmb AT ashdownm planck2015resultsxviisotropyandstatisticsofthecmb AT aumontj planck2015resultsxviisotropyandstatisticsofthecmb AT baccigalupic planck2015resultsxviisotropyandstatisticsofthecmb AT bandayaj planck2015resultsxviisotropyandstatisticsofthecmb AT barreirorb planck2015resultsxviisotropyandstatisticsofthecmb AT bartolon planck2015resultsxviisotropyandstatisticsofthecmb AT basaks planck2015resultsxviisotropyandstatisticsofthecmb AT battanere planck2015resultsxviisotropyandstatisticsofthecmb AT benabedk planck2015resultsxviisotropyandstatisticsofthecmb AT benoita planck2015resultsxviisotropyandstatisticsofthecmb AT benoitlevya planck2015resultsxviisotropyandstatisticsofthecmb AT bernardjp planck2015resultsxviisotropyandstatisticsofthecmb AT bersanellim planck2015resultsxviisotropyandstatisticsofthecmb AT bielewiczp planck2015resultsxviisotropyandstatisticsofthecmb AT bockjj planck2015resultsxviisotropyandstatisticsofthecmb AT bonaldia planck2015resultsxviisotropyandstatisticsofthecmb AT bonaveral planck2015resultsxviisotropyandstatisticsofthecmb AT bondjr planck2015resultsxviisotropyandstatisticsofthecmb AT borrillj planck2015resultsxviisotropyandstatisticsofthecmb AT bouchetfr planck2015resultsxviisotropyandstatisticsofthecmb AT boulangerf planck2015resultsxviisotropyandstatisticsofthecmb AT bucherm planck2015resultsxviisotropyandstatisticsofthecmb AT buriganac planck2015resultsxviisotropyandstatisticsofthecmb AT butlerrc planck2015resultsxviisotropyandstatisticsofthecmb AT calabresee planck2015resultsxviisotropyandstatisticsofthecmb AT cardosojf planck2015resultsxviisotropyandstatisticsofthecmb AT casaponsab planck2015resultsxviisotropyandstatisticsofthecmb AT catalanoa planck2015resultsxviisotropyandstatisticsofthecmb AT challinora planck2015resultsxviisotropyandstatisticsofthecmb AT chamballua planck2015resultsxviisotropyandstatisticsofthecmb AT chianghc planck2015resultsxviisotropyandstatisticsofthecmb AT christensenpr planck2015resultsxviisotropyandstatisticsofthecmb AT churchs planck2015resultsxviisotropyandstatisticsofthecmb AT clementsdl planck2015resultsxviisotropyandstatisticsofthecmb AT colombis planck2015resultsxviisotropyandstatisticsofthecmb AT colombolpl planck2015resultsxviisotropyandstatisticsofthecmb AT combetc planck2015resultsxviisotropyandstatisticsofthecmb AT contrerasd planck2015resultsxviisotropyandstatisticsofthecmb AT couchotf planck2015resultsxviisotropyandstatisticsofthecmb AT coulaisa planck2015resultsxviisotropyandstatisticsofthecmb AT crillbp planck2015resultsxviisotropyandstatisticsofthecmb AT cruzm planck2015resultsxviisotropyandstatisticsofthecmb AT curtoa planck2015resultsxviisotropyandstatisticsofthecmb AT cuttaiaf planck2015resultsxviisotropyandstatisticsofthecmb AT danesel planck2015resultsxviisotropyandstatisticsofthecmb AT daviesrd planck2015resultsxviisotropyandstatisticsofthecmb AT davisrj planck2015resultsxviisotropyandstatisticsofthecmb AT debernardisp planck2015resultsxviisotropyandstatisticsofthecmb AT derosaa planck2015resultsxviisotropyandstatisticsofthecmb AT dezottig planck2015resultsxviisotropyandstatisticsofthecmb AT delabrouillej planck2015resultsxviisotropyandstatisticsofthecmb AT desertfx planck2015resultsxviisotropyandstatisticsofthecmb AT diegojm planck2015resultsxviisotropyandstatisticsofthecmb AT doleh planck2015resultsxviisotropyandstatisticsofthecmb AT donzellis planck2015resultsxviisotropyandstatisticsofthecmb AT doreo planck2015resultsxviisotropyandstatisticsofthecmb AT douspism planck2015resultsxviisotropyandstatisticsofthecmb AT ducouta planck2015resultsxviisotropyandstatisticsofthecmb AT dupacx planck2015resultsxviisotropyandstatisticsofthecmb AT efstathioug planck2015resultsxviisotropyandstatisticsofthecmb AT elsnerf planck2015resultsxviisotropyandstatisticsofthecmb AT ensslinta planck2015resultsxviisotropyandstatisticsofthecmb AT eriksenhk planck2015resultsxviisotropyandstatisticsofthecmb AT fantayey planck2015resultsxviisotropyandstatisticsofthecmb AT fergussonj planck2015resultsxviisotropyandstatisticsofthecmb AT fernandezcobosr planck2015resultsxviisotropyandstatisticsofthecmb AT finellif planck2015resultsxviisotropyandstatisticsofthecmb AT fornio planck2015resultsxviisotropyandstatisticsofthecmb AT frailism planck2015resultsxviisotropyandstatisticsofthecmb AT fraisseaa planck2015resultsxviisotropyandstatisticsofthecmb AT franceschie planck2015resultsxviisotropyandstatisticsofthecmb AT frejsela planck2015resultsxviisotropyandstatisticsofthecmb AT frolova planck2015resultsxviisotropyandstatisticsofthecmb AT galeottas planck2015resultsxviisotropyandstatisticsofthecmb AT gallis planck2015resultsxviisotropyandstatisticsofthecmb AT gangak planck2015resultsxviisotropyandstatisticsofthecmb AT gauthierc planck2015resultsxviisotropyandstatisticsofthecmb AT ghosht planck2015resultsxviisotropyandstatisticsofthecmb AT giardm planck2015resultsxviisotropyandstatisticsofthecmb AT giraudheraudy planck2015resultsxviisotropyandstatisticsofthecmb AT gjerlowe planck2015resultsxviisotropyandstatisticsofthecmb AT gonzaleznuevoj planck2015resultsxviisotropyandstatisticsofthecmb AT gorskikm planck2015resultsxviisotropyandstatisticsofthecmb AT grattons planck2015resultsxviisotropyandstatisticsofthecmb AT gregorioa planck2015resultsxviisotropyandstatisticsofthecmb AT gruppusoa planck2015resultsxviisotropyandstatisticsofthecmb AT gudmundssonje planck2015resultsxviisotropyandstatisticsofthecmb AT hansenfk planck2015resultsxviisotropyandstatisticsofthecmb AT hansond planck2015resultsxviisotropyandstatisticsofthecmb AT harrisondl planck2015resultsxviisotropyandstatisticsofthecmb AT henrotversilles planck2015resultsxviisotropyandstatisticsofthecmb AT hernandezmonteagudoc planck2015resultsxviisotropyandstatisticsofthecmb AT herranzd planck2015resultsxviisotropyandstatisticsofthecmb AT hildebrandtsr planck2015resultsxviisotropyandstatisticsofthecmb AT hivone planck2015resultsxviisotropyandstatisticsofthecmb AT hobsonm planck2015resultsxviisotropyandstatisticsofthecmb AT holmeswa planck2015resultsxviisotropyandstatisticsofthecmb AT hornstrupa planck2015resultsxviisotropyandstatisticsofthecmb AT hovestw planck2015resultsxviisotropyandstatisticsofthecmb AT huangz planck2015resultsxviisotropyandstatisticsofthecmb AT huffenbergerkm planck2015resultsxviisotropyandstatisticsofthecmb AT hurierg planck2015resultsxviisotropyandstatisticsofthecmb AT jaffeah planck2015resultsxviisotropyandstatisticsofthecmb AT jaffetr planck2015resultsxviisotropyandstatisticsofthecmb AT joneswc planck2015resultsxviisotropyandstatisticsofthecmb AT juvelam planck2015resultsxviisotropyandstatisticsofthecmb AT keihanene planck2015resultsxviisotropyandstatisticsofthecmb AT keskitalor planck2015resultsxviisotropyandstatisticsofthecmb AT kimj planck2015resultsxviisotropyandstatisticsofthecmb AT kisnerts planck2015resultsxviisotropyandstatisticsofthecmb AT knochej planck2015resultsxviisotropyandstatisticsofthecmb AT kunzm planck2015resultsxviisotropyandstatisticsofthecmb AT kurkisuonioh planck2015resultsxviisotropyandstatisticsofthecmb AT lagacheg planck2015resultsxviisotropyandstatisticsofthecmb AT lahteenmakia planck2015resultsxviisotropyandstatisticsofthecmb AT lamarrejm planck2015resultsxviisotropyandstatisticsofthecmb AT lasenbya planck2015resultsxviisotropyandstatisticsofthecmb AT lattanzim planck2015resultsxviisotropyandstatisticsofthecmb AT lawrencecr planck2015resultsxviisotropyandstatisticsofthecmb AT leonardir planck2015resultsxviisotropyandstatisticsofthecmb AT lesgourguesj planck2015resultsxviisotropyandstatisticsofthecmb AT levrierf planck2015resultsxviisotropyandstatisticsofthecmb AT liguorim planck2015resultsxviisotropyandstatisticsofthecmb AT liljepb planck2015resultsxviisotropyandstatisticsofthecmb AT lindenvornlem planck2015resultsxviisotropyandstatisticsofthecmb AT liuh planck2015resultsxviisotropyandstatisticsofthecmb AT lopezcaniegom planck2015resultsxviisotropyandstatisticsofthecmb AT lubinpm planck2015resultsxviisotropyandstatisticsofthecmb AT maciasperezjf planck2015resultsxviisotropyandstatisticsofthecmb AT maggiog planck2015resultsxviisotropyandstatisticsofthecmb AT mainod planck2015resultsxviisotropyandstatisticsofthecmb AT mandolesin planck2015resultsxviisotropyandstatisticsofthecmb AT mangillia planck2015resultsxviisotropyandstatisticsofthecmb AT marinuccid planck2015resultsxviisotropyandstatisticsofthecmb AT marism planck2015resultsxviisotropyandstatisticsofthecmb AT martinpg planck2015resultsxviisotropyandstatisticsofthecmb AT martinezgonzaleze planck2015resultsxviisotropyandstatisticsofthecmb AT masis planck2015resultsxviisotropyandstatisticsofthecmb AT matarreses planck2015resultsxviisotropyandstatisticsofthecmb AT mcgeheep planck2015resultsxviisotropyandstatisticsofthecmb AT meinholdpr planck2015resultsxviisotropyandstatisticsofthecmb AT melchiorria planck2015resultsxviisotropyandstatisticsofthecmb AT mendesl planck2015resultsxviisotropyandstatisticsofthecmb AT mennellaa planck2015resultsxviisotropyandstatisticsofthecmb AT migliacciom planck2015resultsxviisotropyandstatisticsofthecmb AT mikkelsenk planck2015resultsxviisotropyandstatisticsofthecmb AT mitras planck2015resultsxviisotropyandstatisticsofthecmb AT mivilledeschenesma planck2015resultsxviisotropyandstatisticsofthecmb AT molinarid planck2015resultsxviisotropyandstatisticsofthecmb AT monetia planck2015resultsxviisotropyandstatisticsofthecmb AT montierl planck2015resultsxviisotropyandstatisticsofthecmb AT morganteg planck2015resultsxviisotropyandstatisticsofthecmb AT mortlockd planck2015resultsxviisotropyandstatisticsofthecmb AT mossa planck2015resultsxviisotropyandstatisticsofthecmb AT munshid planck2015resultsxviisotropyandstatisticsofthecmb AT murphyja planck2015resultsxviisotropyandstatisticsofthecmb AT naselskyp planck2015resultsxviisotropyandstatisticsofthecmb AT natif planck2015resultsxviisotropyandstatisticsofthecmb AT natolip planck2015resultsxviisotropyandstatisticsofthecmb AT netterfieldcb planck2015resultsxviisotropyandstatisticsofthecmb AT norgaardnielsenhu planck2015resultsxviisotropyandstatisticsofthecmb AT noviellof planck2015resultsxviisotropyandstatisticsofthecmb AT novikovd planck2015resultsxviisotropyandstatisticsofthecmb AT novikovi planck2015resultsxviisotropyandstatisticsofthecmb AT oxborrowca planck2015resultsxviisotropyandstatisticsofthecmb AT pacif planck2015resultsxviisotropyandstatisticsofthecmb AT paganol planck2015resultsxviisotropyandstatisticsofthecmb AT pajotf planck2015resultsxviisotropyandstatisticsofthecmb AT pantn planck2015resultsxviisotropyandstatisticsofthecmb AT paolettid planck2015resultsxviisotropyandstatisticsofthecmb AT pasianf planck2015resultsxviisotropyandstatisticsofthecmb AT patanchong planck2015resultsxviisotropyandstatisticsofthecmb AT pearsontj planck2015resultsxviisotropyandstatisticsofthecmb AT perdereauo planck2015resultsxviisotropyandstatisticsofthecmb AT perottol planck2015resultsxviisotropyandstatisticsofthecmb AT perrottaf planck2015resultsxviisotropyandstatisticsofthecmb AT pettorinov planck2015resultsxviisotropyandstatisticsofthecmb AT piacentinif planck2015resultsxviisotropyandstatisticsofthecmb AT piatm planck2015resultsxviisotropyandstatisticsofthecmb AT pierpaolie planck2015resultsxviisotropyandstatisticsofthecmb AT pietrobond planck2015resultsxviisotropyandstatisticsofthecmb AT plaszczynskis planck2015resultsxviisotropyandstatisticsofthecmb AT pointecouteaue planck2015resultsxviisotropyandstatisticsofthecmb AT polentag planck2015resultsxviisotropyandstatisticsofthecmb AT popal planck2015resultsxviisotropyandstatisticsofthecmb AT prattgw planck2015resultsxviisotropyandstatisticsofthecmb AT prezeaug planck2015resultsxviisotropyandstatisticsofthecmb AT prunets planck2015resultsxviisotropyandstatisticsofthecmb AT pugetjl planck2015resultsxviisotropyandstatisticsofthecmb AT rachenjp planck2015resultsxviisotropyandstatisticsofthecmb AT rebolor planck2015resultsxviisotropyandstatisticsofthecmb AT reineckem planck2015resultsxviisotropyandstatisticsofthecmb AT remazeillesm planck2015resultsxviisotropyandstatisticsofthecmb AT renaultc planck2015resultsxviisotropyandstatisticsofthecmb AT renzia planck2015resultsxviisotropyandstatisticsofthecmb AT ristorcellii planck2015resultsxviisotropyandstatisticsofthecmb AT rochag planck2015resultsxviisotropyandstatisticsofthecmb AT rossetc planck2015resultsxviisotropyandstatisticsofthecmb AT rossettim planck2015resultsxviisotropyandstatisticsofthecmb AT rottia planck2015resultsxviisotropyandstatisticsofthecmb AT roudierg planck2015resultsxviisotropyandstatisticsofthecmb AT rubinomartinja planck2015resultsxviisotropyandstatisticsofthecmb AT rusholmeb planck2015resultsxviisotropyandstatisticsofthecmb AT sandrim planck2015resultsxviisotropyandstatisticsofthecmb AT santosd planck2015resultsxviisotropyandstatisticsofthecmb AT savelainenm planck2015resultsxviisotropyandstatisticsofthecmb AT savinig planck2015resultsxviisotropyandstatisticsofthecmb AT scottd planck2015resultsxviisotropyandstatisticsofthecmb AT seiffertmd planck2015resultsxviisotropyandstatisticsofthecmb AT shellardeps planck2015resultsxviisotropyandstatisticsofthecmb AT souradeept planck2015resultsxviisotropyandstatisticsofthecmb AT spencerld planck2015resultsxviisotropyandstatisticsofthecmb AT stolyarovv planck2015resultsxviisotropyandstatisticsofthecmb AT stomporr planck2015resultsxviisotropyandstatisticsofthecmb AT sudiwalar planck2015resultsxviisotropyandstatisticsofthecmb AT sunyaevr planck2015resultsxviisotropyandstatisticsofthecmb AT suttond planck2015resultsxviisotropyandstatisticsofthecmb AT suuruskias planck2015resultsxviisotropyandstatisticsofthecmb AT sygnetjf planck2015resultsxviisotropyandstatisticsofthecmb AT tauberja planck2015resultsxviisotropyandstatisticsofthecmb AT terenzil planck2015resultsxviisotropyandstatisticsofthecmb AT toffolattil planck2015resultsxviisotropyandstatisticsofthecmb AT tomasim planck2015resultsxviisotropyandstatisticsofthecmb AT tristramm planck2015resultsxviisotropyandstatisticsofthecmb AT trombettit planck2015resultsxviisotropyandstatisticsofthecmb AT tuccim planck2015resultsxviisotropyandstatisticsofthecmb AT tuovinenj planck2015resultsxviisotropyandstatisticsofthecmb AT valenzianol planck2015resultsxviisotropyandstatisticsofthecmb AT valiviitaj planck2015resultsxviisotropyandstatisticsofthecmb AT vantentb planck2015resultsxviisotropyandstatisticsofthecmb AT vielvap planck2015resultsxviisotropyandstatisticsofthecmb AT villaf planck2015resultsxviisotropyandstatisticsofthecmb AT wadela planck2015resultsxviisotropyandstatisticsofthecmb AT wandeltbd planck2015resultsxviisotropyandstatisticsofthecmb AT wehusik planck2015resultsxviisotropyandstatisticsofthecmb AT yvond planck2015resultsxviisotropyandstatisticsofthecmb AT zaccheia planck2015resultsxviisotropyandstatisticsofthecmb AT zibinjp planck2015resultsxviisotropyandstatisticsofthecmb AT zoncaa planck2015resultsxviisotropyandstatisticsofthecmb |