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Planck 2015 results. XVIII. Background geometry & topology

Full-sky CMB maps from the 2015 Planck release allow us to detect departures from global isotropy on the largest scales. We present the first searches using CMB polarization for correlations induced by a non-trivial topology with a fundamental domain intersecting, or nearly intersecting, the last sc...

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Detalles Bibliográficos
Autores principales: Ade, P.A.R., Aghanim, N., Arnaud, M., Ashdown, M., Aumont, J., Baccigalupi, C., Banday, A.J., Barreiro, R.B., Bartolo, N., Basak, S., Battaner, E., Benabed, K., Benoît, A., Benoit-Lévy, A., Bernard, J.P., Bersanelli, M., Bielewicz, P., Bock, J.J., Bonaldi, A., Bonavera, L., Bond, J.R., Borrill, J., Bouchet, F.R., Bucher, M., Burigana, C., Butler, R.C., Calabrese, E., Cardoso, J.F., 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., Couchot, F., Coulais, A., Crill, B.P., Curto, A., Cuttaia, F., Danese, L., Davies, R.D., Davis, R.J., de Bernardis, P., De Rosa, A., De Zotti, G., Delabrouille, J., Désert, F.X., Diego, J.M., Dole, H., Donzelli, S., Doré, O., Douspis, M., Ducout, A., Dupac, X., Efstathiou, G., Elsner, F., Enßlin, T.A., Eriksen, H.K., Feeney, S., Fergusson, J., Finelli, F., Forni, O., Frailis, M., Fraisse, A.A., Franceschi, E., Frejsel, A., Galeotta, S., Galli, S., Ganga, K., Giard, M., Giraud-Héraud, Y., Gjerløw, E., González-Nuevo, J., Górski, K.M., Gratton, S., Gregorio, A., Gruppuso, A., Gudmundsson, J.E., Hansen, F.K., Hanson, D., Harrison, D.L., Henrot-Versillé, S., Hernández-Monteagudo, C., Herranz, D., Hildebrandt, S.R., Hivon, E., Hobson, M., Holmes, W.A., Hornstrup, A., Hovest, W., Huffenberger, K.M., Hurier, G., Jaffe, A.H., Jaffe, T.R., Jones, W.C., Juvela, M., Keihänen, E., Keskitalo, R., Kisner, T.S., Knoche, J., Kunz, M., Kurki-Suonio, H., Lagache, G., Lähteenmäki, A., Lamarre, J.M., Lasenby, A., Lattanzi, M., Lawrence, C.R., Leonardi, R., Lesgourgues, J., Levrier, F., Liguori, M., Lilje, P.B., Linden-Vørnle, M., López-Caniego, M., Lubin, P.M., Macías-Pérez, J.F., Maggio, G., Maino, D., Mandolesi, N., Mangilli, A., Maris, M., Martin, P.G., Martínez-González, E., Masi, S., Matarrese, S., McEwen, J.D., McGehee, P., Meinhold, P.R., Melchiorri, A., Mendes, L., Mennella, A., Migliaccio, M., Mitra, S., Miville-Deschênes, 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., Nørgaard-Nielsen, H.U., Noviello, F., Novikov, D., Novikov, I., Oxborrow, C.A., Paci, F., Pagano, L., Pajot, F., Paoletti, D., Pasian, F., Patanchon, G., Peiris, H.V., Perdereau, O., Perotto, L., Perrotta, F., Pettorino, V., Piacentini, F., Piat, M., Pierpaoli, E., Pietrobon, D., Plaszczynski, S., Pogosyan, D., Pointecouteau, E., Polenta, G., Popa, L., Pratt, G.W., Prézeau, 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., Roudier, G., Rowan-Robinson, M., Rubiño-Martín, J.A., Rusholme, B., Sandri, M., Santos, D., Savelainen, M., Savini, G., Scott, D., Seiffert, M.D., Shellard, E.P.S., Spencer, L.D., Stolyarov, V., Stompor, R., Sudiwala, R., Sutton, D., Suur-Uski, A.S., Sygnet, J.F., Tauber, J.A., Terenzi, L., Toffolatti, L., Tomasi, M., Tristram, M., Tucci, M., Tuovinen, J., Valenziano, L., Valiviita, J., Tent, F. Van, Vielva, P., Villa, F., Wade, L.A., Wandelt, B.D., Wehus, I.K., Yvon, D., Zacchei, A., Zonca, A.
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1051/0004-6361/201525829
http://cds.cern.ch/record/1987170
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author Ade, P.A.R.
Aghanim, N.
Arnaud, M.
Ashdown, M.
Aumont, J.
Baccigalupi, C.
Banday, A.J.
Barreiro, R.B.
Bartolo, N.
Basak, S.
Battaner, E.
Benabed, K.
Benoît, A.
Benoit-Lévy, A.
Bernard, J.P.
Bersanelli, M.
Bielewicz, P.
Bock, J.J.
Bonaldi, A.
Bonavera, L.
Bond, J.R.
Borrill, J.
Bouchet, F.R.
Bucher, M.
Burigana, C.
Butler, R.C.
Calabrese, E.
Cardoso, J.F.
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.
Couchot, F.
Coulais, A.
Crill, B.P.
Curto, A.
Cuttaia, F.
Danese, L.
Davies, R.D.
Davis, R.J.
de Bernardis, P.
De Rosa, A.
De Zotti, G.
Delabrouille, J.
Désert, F.X.
Diego, J.M.
Dole, H.
Donzelli, S.
Doré, O.
Douspis, M.
Ducout, A.
Dupac, X.
Efstathiou, G.
Elsner, F.
Enßlin, T.A.
Eriksen, H.K.
Feeney, S.
Fergusson, J.
Finelli, F.
Forni, O.
Frailis, M.
Fraisse, A.A.
Franceschi, E.
Frejsel, A.
Galeotta, S.
Galli, S.
Ganga, K.
Giard, M.
Giraud-Héraud, Y.
Gjerløw, E.
González-Nuevo, J.
Górski, K.M.
Gratton, S.
Gregorio, A.
Gruppuso, A.
Gudmundsson, J.E.
Hansen, F.K.
Hanson, D.
Harrison, D.L.
Henrot-Versillé, S.
Hernández-Monteagudo, C.
Herranz, D.
Hildebrandt, S.R.
Hivon, E.
Hobson, M.
Holmes, W.A.
Hornstrup, A.
Hovest, W.
Huffenberger, K.M.
Hurier, G.
Jaffe, A.H.
Jaffe, T.R.
Jones, W.C.
Juvela, M.
Keihänen, E.
Keskitalo, R.
Kisner, T.S.
Knoche, J.
Kunz, M.
Kurki-Suonio, H.
Lagache, G.
Lähteenmäki, A.
Lamarre, J.M.
Lasenby, A.
Lattanzi, M.
Lawrence, C.R.
Leonardi, R.
Lesgourgues, J.
Levrier, F.
Liguori, M.
Lilje, P.B.
Linden-Vørnle, M.
López-Caniego, M.
Lubin, P.M.
Macías-Pérez, J.F.
Maggio, G.
Maino, D.
Mandolesi, N.
Mangilli, A.
Maris, M.
Martin, P.G.
Martínez-González, E.
Masi, S.
Matarrese, S.
McEwen, J.D.
McGehee, P.
Meinhold, P.R.
Melchiorri, A.
Mendes, L.
Mennella, A.
Migliaccio, M.
Mitra, S.
Miville-Deschênes, 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.
Nørgaard-Nielsen, H.U.
Noviello, F.
Novikov, D.
Novikov, I.
Oxborrow, C.A.
Paci, F.
Pagano, L.
Pajot, F.
Paoletti, D.
Pasian, F.
Patanchon, G.
Peiris, H.V.
Perdereau, O.
Perotto, L.
Perrotta, F.
Pettorino, V.
Piacentini, F.
Piat, M.
Pierpaoli, E.
Pietrobon, D.
Plaszczynski, S.
Pogosyan, D.
Pointecouteau, E.
Polenta, G.
Popa, L.
Pratt, G.W.
Prézeau, 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.
Roudier, G.
Rowan-Robinson, M.
Rubiño-Martín, J.A.
Rusholme, B.
Sandri, M.
Santos, D.
Savelainen, M.
Savini, G.
Scott, D.
Seiffert, M.D.
Shellard, E.P.S.
Spencer, L.D.
Stolyarov, V.
Stompor, R.
Sudiwala, R.
Sutton, D.
Suur-Uski, A.S.
Sygnet, J.F.
Tauber, J.A.
Terenzi, L.
Toffolatti, L.
Tomasi, M.
Tristram, M.
Tucci, M.
Tuovinen, J.
Valenziano, L.
Valiviita, J.
Tent, F. Van
Vielva, P.
Villa, F.
Wade, L.A.
Wandelt, B.D.
Wehus, I.K.
Yvon, D.
Zacchei, A.
Zonca, A.
author_facet Ade, P.A.R.
Aghanim, N.
Arnaud, M.
Ashdown, M.
Aumont, J.
Baccigalupi, C.
Banday, A.J.
Barreiro, R.B.
Bartolo, N.
Basak, S.
Battaner, E.
Benabed, K.
Benoît, A.
Benoit-Lévy, A.
Bernard, J.P.
Bersanelli, M.
Bielewicz, P.
Bock, J.J.
Bonaldi, A.
Bonavera, L.
Bond, J.R.
Borrill, J.
Bouchet, F.R.
Bucher, M.
Burigana, C.
Butler, R.C.
Calabrese, E.
Cardoso, J.F.
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.
Couchot, F.
Coulais, A.
Crill, B.P.
Curto, A.
Cuttaia, F.
Danese, L.
Davies, R.D.
Davis, R.J.
de Bernardis, P.
De Rosa, A.
De Zotti, G.
Delabrouille, J.
Désert, F.X.
Diego, J.M.
Dole, H.
Donzelli, S.
Doré, O.
Douspis, M.
Ducout, A.
Dupac, X.
Efstathiou, G.
Elsner, F.
Enßlin, T.A.
Eriksen, H.K.
Feeney, S.
Fergusson, J.
Finelli, F.
Forni, O.
Frailis, M.
Fraisse, A.A.
Franceschi, E.
Frejsel, A.
Galeotta, S.
Galli, S.
Ganga, K.
Giard, M.
Giraud-Héraud, Y.
Gjerløw, E.
González-Nuevo, J.
Górski, K.M.
Gratton, S.
Gregorio, A.
Gruppuso, A.
Gudmundsson, J.E.
Hansen, F.K.
Hanson, D.
Harrison, D.L.
Henrot-Versillé, S.
Hernández-Monteagudo, C.
Herranz, D.
Hildebrandt, S.R.
Hivon, E.
Hobson, M.
Holmes, W.A.
Hornstrup, A.
Hovest, W.
Huffenberger, K.M.
Hurier, G.
Jaffe, A.H.
Jaffe, T.R.
Jones, W.C.
Juvela, M.
Keihänen, E.
Keskitalo, R.
Kisner, T.S.
Knoche, J.
Kunz, M.
Kurki-Suonio, H.
Lagache, G.
Lähteenmäki, A.
Lamarre, J.M.
Lasenby, A.
Lattanzi, M.
Lawrence, C.R.
Leonardi, R.
Lesgourgues, J.
Levrier, F.
Liguori, M.
Lilje, P.B.
Linden-Vørnle, M.
López-Caniego, M.
Lubin, P.M.
Macías-Pérez, J.F.
Maggio, G.
Maino, D.
Mandolesi, N.
Mangilli, A.
Maris, M.
Martin, P.G.
Martínez-González, E.
Masi, S.
Matarrese, S.
McEwen, J.D.
McGehee, P.
Meinhold, P.R.
Melchiorri, A.
Mendes, L.
Mennella, A.
Migliaccio, M.
Mitra, S.
Miville-Deschênes, 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.
Nørgaard-Nielsen, H.U.
Noviello, F.
Novikov, D.
Novikov, I.
Oxborrow, C.A.
Paci, F.
Pagano, L.
Pajot, F.
Paoletti, D.
Pasian, F.
Patanchon, G.
Peiris, H.V.
Perdereau, O.
Perotto, L.
Perrotta, F.
Pettorino, V.
Piacentini, F.
Piat, M.
Pierpaoli, E.
Pietrobon, D.
Plaszczynski, S.
Pogosyan, D.
Pointecouteau, E.
Polenta, G.
Popa, L.
Pratt, G.W.
Prézeau, 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.
Roudier, G.
Rowan-Robinson, M.
Rubiño-Martín, J.A.
Rusholme, B.
Sandri, M.
Santos, D.
Savelainen, M.
Savini, G.
Scott, D.
Seiffert, M.D.
Shellard, E.P.S.
Spencer, L.D.
Stolyarov, V.
Stompor, R.
Sudiwala, R.
Sutton, D.
Suur-Uski, A.S.
Sygnet, J.F.
Tauber, J.A.
Terenzi, L.
Toffolatti, L.
Tomasi, M.
Tristram, M.
Tucci, M.
Tuovinen, J.
Valenziano, L.
Valiviita, J.
Tent, F. Van
Vielva, P.
Villa, F.
Wade, L.A.
Wandelt, B.D.
Wehus, I.K.
Yvon, D.
Zacchei, A.
Zonca, A.
author_sort Ade, P.A.R.
collection CERN
description Full-sky CMB maps from the 2015 Planck release allow us to detect departures from global isotropy on the largest scales. We present the first searches using CMB polarization for correlations induced by a non-trivial topology with a fundamental domain intersecting, or nearly intersecting, the last scattering surface (at comoving distance $\chi_{rec}$). We specialize to flat spaces with toroidal and slab topologies, finding that explicit searches for the latter are sensitive to other topologies with antipodal symmetry. These searches yield no detection of a compact topology at a scale below the diameter of the last scattering surface. The limits on the radius $R_i$ of the largest sphere inscribed in the topological domain (at log-likelihood-ratio $\Delta\ln{L}>-5$ relative to a simply-connected flat Planck best-fit model) are $R_i>0.97\chi_{rec}$ for the cubic torus and $R_i>0.56\chi_{rec}$ for the slab. The limit for the cubic torus from the matched-circles search is numerically equivalent, $R_i>0.97\chi_{rec}$ (99% CL) from polarisation data alone. We also perform a Bayesian search for a Bianchi VII$_h$ geometry. In the non-physical setting where the Bianchi cosmology is decoupled from the standard cosmology, Planck temperature data favour the inclusion of a Bianchi component. However, the cosmological parameters generating this pattern are in strong disagreement with those found from CMB anisotropy data alone. Fitting the induced polarization pattern for this model to Planck data requires an amplitude of $-0.1\pm0.04$ compared to +1 if the model were to be correct. In the physical setting where the Bianchi parameters are fit simultaneously with the standard cosmological parameters, we find no evidence for a Bianchi VII$_h$ cosmology and constrain the vorticity of such models to $(\omega/H)_0<7.6\times10^{-10}$ (95% CL). [Abridged]
id cern-1987170
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
record_format invenio
spelling cern-19871702023-03-14T16:54:53Zdoi:10.1051/0004-6361/201525829http://cds.cern.ch/record/1987170engAde, P.A.R.Aghanim, N.Arnaud, M.Ashdown, M.Aumont, J.Baccigalupi, C.Banday, A.J.Barreiro, R.B.Bartolo, N.Basak, S.Battaner, E.Benabed, K.Benoît, A.Benoit-Lévy, A.Bernard, J.P.Bersanelli, M.Bielewicz, P.Bock, J.J.Bonaldi, A.Bonavera, L.Bond, J.R.Borrill, J.Bouchet, F.R.Bucher, M.Burigana, C.Butler, R.C.Calabrese, E.Cardoso, J.F.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.Couchot, F.Coulais, A.Crill, B.P.Curto, A.Cuttaia, F.Danese, L.Davies, R.D.Davis, R.J.de Bernardis, P.De Rosa, A.De Zotti, G.Delabrouille, J.Désert, F.X.Diego, J.M.Dole, H.Donzelli, S.Doré, O.Douspis, M.Ducout, A.Dupac, X.Efstathiou, G.Elsner, F.Enßlin, T.A.Eriksen, H.K.Feeney, S.Fergusson, J.Finelli, F.Forni, O.Frailis, M.Fraisse, A.A.Franceschi, E.Frejsel, A.Galeotta, S.Galli, S.Ganga, K.Giard, M.Giraud-Héraud, Y.Gjerløw, E.González-Nuevo, J.Górski, K.M.Gratton, S.Gregorio, A.Gruppuso, A.Gudmundsson, J.E.Hansen, F.K.Hanson, D.Harrison, D.L.Henrot-Versillé, S.Hernández-Monteagudo, C.Herranz, D.Hildebrandt, S.R.Hivon, E.Hobson, M.Holmes, W.A.Hornstrup, A.Hovest, W.Huffenberger, K.M.Hurier, G.Jaffe, A.H.Jaffe, T.R.Jones, W.C.Juvela, M.Keihänen, E.Keskitalo, R.Kisner, T.S.Knoche, J.Kunz, M.Kurki-Suonio, H.Lagache, G.Lähteenmäki, A.Lamarre, J.M.Lasenby, A.Lattanzi, M.Lawrence, C.R.Leonardi, R.Lesgourgues, J.Levrier, F.Liguori, M.Lilje, P.B.Linden-Vørnle, M.López-Caniego, M.Lubin, P.M.Macías-Pérez, J.F.Maggio, G.Maino, D.Mandolesi, N.Mangilli, A.Maris, M.Martin, P.G.Martínez-González, E.Masi, S.Matarrese, S.McEwen, J.D.McGehee, P.Meinhold, P.R.Melchiorri, A.Mendes, L.Mennella, A.Migliaccio, M.Mitra, S.Miville-Deschênes, 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.Nørgaard-Nielsen, H.U.Noviello, F.Novikov, D.Novikov, I.Oxborrow, C.A.Paci, F.Pagano, L.Pajot, F.Paoletti, D.Pasian, F.Patanchon, G.Peiris, H.V.Perdereau, O.Perotto, L.Perrotta, F.Pettorino, V.Piacentini, F.Piat, M.Pierpaoli, E.Pietrobon, D.Plaszczynski, S.Pogosyan, D.Pointecouteau, E.Polenta, G.Popa, L.Pratt, G.W.Prézeau, 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.Roudier, G.Rowan-Robinson, M.Rubiño-Martín, J.A.Rusholme, B.Sandri, M.Santos, D.Savelainen, M.Savini, G.Scott, D.Seiffert, M.D.Shellard, E.P.S.Spencer, L.D.Stolyarov, V.Stompor, R.Sudiwala, R.Sutton, D.Suur-Uski, A.S.Sygnet, J.F.Tauber, J.A.Terenzi, L.Toffolatti, L.Tomasi, M.Tristram, M.Tucci, M.Tuovinen, J.Valenziano, L.Valiviita, J.Tent, F. VanVielva, P.Villa, F.Wade, L.A.Wandelt, B.D.Wehus, I.K.Yvon, D.Zacchei, A.Zonca, A.Planck 2015 results. XVIII. Background geometry & topologyAstrophysics and AstronomyFull-sky CMB maps from the 2015 Planck release allow us to detect departures from global isotropy on the largest scales. We present the first searches using CMB polarization for correlations induced by a non-trivial topology with a fundamental domain intersecting, or nearly intersecting, the last scattering surface (at comoving distance $\chi_{rec}$). We specialize to flat spaces with toroidal and slab topologies, finding that explicit searches for the latter are sensitive to other topologies with antipodal symmetry. These searches yield no detection of a compact topology at a scale below the diameter of the last scattering surface. The limits on the radius $R_i$ of the largest sphere inscribed in the topological domain (at log-likelihood-ratio $\Delta\ln{L}>-5$ relative to a simply-connected flat Planck best-fit model) are $R_i>0.97\chi_{rec}$ for the cubic torus and $R_i>0.56\chi_{rec}$ for the slab. The limit for the cubic torus from the matched-circles search is numerically equivalent, $R_i>0.97\chi_{rec}$ (99% CL) from polarisation data alone. We also perform a Bayesian search for a Bianchi VII$_h$ geometry. In the non-physical setting where the Bianchi cosmology is decoupled from the standard cosmology, Planck temperature data favour the inclusion of a Bianchi component. However, the cosmological parameters generating this pattern are in strong disagreement with those found from CMB anisotropy data alone. Fitting the induced polarization pattern for this model to Planck data requires an amplitude of $-0.1\pm0.04$ compared to +1 if the model were to be correct. In the physical setting where the Bianchi parameters are fit simultaneously with the standard cosmological parameters, we find no evidence for a Bianchi VII$_h$ cosmology and constrain the vorticity of such models to $(\omega/H)_0<7.6\times10^{-10}$ (95% CL). [Abridged]Maps of cosmic microwave background (CMB) temperature and polarization from the 2015 release of Planck data provide the highestquality full-sky view of the surface of last scattering available to date. This enables us to detect possible departures from a globally isotropic cosmology. We present the first searches using CMB polarization for correlations induced by a possible non-trivial topology with a fundamental domain that intersects, or nearly intersects, the last-scattering surface (at comoving distance chi_rec), both via a direct scan for matched circular patterns at the intersections and by an optimal likelihood calculation for specific topologies. We specialize to flat spaces with cubic toroidal (T3) and slab (T1) topologies, finding that explicit searches for the latter are sensitive to other topologies with antipodal symmetry. These searches yield no detection of a compact topology with a scale below the diameter of the last-scattering surface. The limits on the radius &#8475;_i of the largest sphere inscribed in the fundamental domain (at log-likelihood ratio Deltaln&#8466; > -5 relative to a simply-connected flat Planck best-fit model) are: &#8475;_i > 0.97 chi_rec for the T3 cubic torus; and &#8475;_i > 0.56 chi_rec for the T1 slab. The limit for the T3 cubic torus from the matched-circles search is numerically equivalent, &#8475;_i > 0.97 chi_rec at 99% confidence level from polarization data alone. We also perform a Bayesian search for an anisotropic global Bianchi VII_h geometry. In the non-physical setting, where the Bianchi cosmology is decoupled from the standard cosmology, Planck temperature data favour the inclusion of a Bianchi component with a Bayes factor of at least 2.3 units of log-evidence. However, the cosmological parameters that generate this pattern are in strong disagreement with those found from CMB anisotropy data alone. Fitting the induced polarization pattern for this model to the Planck data requires an amplitude of -0.10 +- 0.04 compared to the value of + 1 if the model were to be correct. In the physically motivated setting, where the Bianchi parameters are coupled and fitted simultaneously with the standard cosmological parameters, we find no evidence for a Bianchi VII_h cosmology and constrain the vorticity of such models to (omega/H)_0 (95% CL).Full-sky CMB maps from the 2015 Planck release allow us to detect departures from global isotropy on the largest scales. We present the first searches using CMB polarization for correlations induced by a non-trivial topology with a fundamental domain intersecting, or nearly intersecting, the last scattering surface (at comoving distance $\chi_{rec}$). We specialize to flat spaces with toroidal and slab topologies, finding that explicit searches for the latter are sensitive to other topologies with antipodal symmetry. These searches yield no detection of a compact topology at a scale below the diameter of the last scattering surface. The limits on the radius $R_i$ of the largest sphere inscribed in the topological domain (at log-likelihood-ratio $\Delta\ln{L}>-5$ relative to a simply-connected flat Planck best-fit model) are $R_i>0.97\chi_{rec}$ for the cubic torus and $R_i>0.56\chi_{rec}$ for the slab. The limit for the cubic torus from the matched-circles search is numerically equivalent, $R_i>0.97\chi_{rec}$ (99% CL) from polarisation data alone. We also perform a Bayesian search for a Bianchi VII$_h$ geometry. In the non-physical setting where the Bianchi cosmology is decoupled from the standard cosmology, Planck temperature data favour the inclusion of a Bianchi component. However, the cosmological parameters generating this pattern are in strong disagreement with those found from CMB anisotropy data alone. Fitting the induced polarization pattern for this model to Planck data requires an amplitude of $-0.1\pm0.04$ compared to +1 if the model were to be correct. In the physical setting where the Bianchi parameters are fit simultaneously with the standard cosmological parameters, we find no evidence for a Bianchi VII$_h$ cosmology and constrain the vorticity of such models to $(\omega/H)_0<7.6\times10^{-10}$ (95% CL). [Abridged]arXiv:1502.01593oai:cds.cern.ch:19871702015-02-05
spellingShingle Astrophysics and Astronomy
Ade, P.A.R.
Aghanim, N.
Arnaud, M.
Ashdown, M.
Aumont, J.
Baccigalupi, C.
Banday, A.J.
Barreiro, R.B.
Bartolo, N.
Basak, S.
Battaner, E.
Benabed, K.
Benoît, A.
Benoit-Lévy, A.
Bernard, J.P.
Bersanelli, M.
Bielewicz, P.
Bock, J.J.
Bonaldi, A.
Bonavera, L.
Bond, J.R.
Borrill, J.
Bouchet, F.R.
Bucher, M.
Burigana, C.
Butler, R.C.
Calabrese, E.
Cardoso, J.F.
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.
Couchot, F.
Coulais, A.
Crill, B.P.
Curto, A.
Cuttaia, F.
Danese, L.
Davies, R.D.
Davis, R.J.
de Bernardis, P.
De Rosa, A.
De Zotti, G.
Delabrouille, J.
Désert, F.X.
Diego, J.M.
Dole, H.
Donzelli, S.
Doré, O.
Douspis, M.
Ducout, A.
Dupac, X.
Efstathiou, G.
Elsner, F.
Enßlin, T.A.
Eriksen, H.K.
Feeney, S.
Fergusson, J.
Finelli, F.
Forni, O.
Frailis, M.
Fraisse, A.A.
Franceschi, E.
Frejsel, A.
Galeotta, S.
Galli, S.
Ganga, K.
Giard, M.
Giraud-Héraud, Y.
Gjerløw, E.
González-Nuevo, J.
Górski, K.M.
Gratton, S.
Gregorio, A.
Gruppuso, A.
Gudmundsson, J.E.
Hansen, F.K.
Hanson, D.
Harrison, D.L.
Henrot-Versillé, S.
Hernández-Monteagudo, C.
Herranz, D.
Hildebrandt, S.R.
Hivon, E.
Hobson, M.
Holmes, W.A.
Hornstrup, A.
Hovest, W.
Huffenberger, K.M.
Hurier, G.
Jaffe, A.H.
Jaffe, T.R.
Jones, W.C.
Juvela, M.
Keihänen, E.
Keskitalo, R.
Kisner, T.S.
Knoche, J.
Kunz, M.
Kurki-Suonio, H.
Lagache, G.
Lähteenmäki, A.
Lamarre, J.M.
Lasenby, A.
Lattanzi, M.
Lawrence, C.R.
Leonardi, R.
Lesgourgues, J.
Levrier, F.
Liguori, M.
Lilje, P.B.
Linden-Vørnle, M.
López-Caniego, M.
Lubin, P.M.
Macías-Pérez, J.F.
Maggio, G.
Maino, D.
Mandolesi, N.
Mangilli, A.
Maris, M.
Martin, P.G.
Martínez-González, E.
Masi, S.
Matarrese, S.
McEwen, J.D.
McGehee, P.
Meinhold, P.R.
Melchiorri, A.
Mendes, L.
Mennella, A.
Migliaccio, M.
Mitra, S.
Miville-Deschênes, 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.
Nørgaard-Nielsen, H.U.
Noviello, F.
Novikov, D.
Novikov, I.
Oxborrow, C.A.
Paci, F.
Pagano, L.
Pajot, F.
Paoletti, D.
Pasian, F.
Patanchon, G.
Peiris, H.V.
Perdereau, O.
Perotto, L.
Perrotta, F.
Pettorino, V.
Piacentini, F.
Piat, M.
Pierpaoli, E.
Pietrobon, D.
Plaszczynski, S.
Pogosyan, D.
Pointecouteau, E.
Polenta, G.
Popa, L.
Pratt, G.W.
Prézeau, 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.
Roudier, G.
Rowan-Robinson, M.
Rubiño-Martín, J.A.
Rusholme, B.
Sandri, M.
Santos, D.
Savelainen, M.
Savini, G.
Scott, D.
Seiffert, M.D.
Shellard, E.P.S.
Spencer, L.D.
Stolyarov, V.
Stompor, R.
Sudiwala, R.
Sutton, D.
Suur-Uski, A.S.
Sygnet, J.F.
Tauber, J.A.
Terenzi, L.
Toffolatti, L.
Tomasi, M.
Tristram, M.
Tucci, M.
Tuovinen, J.
Valenziano, L.
Valiviita, J.
Tent, F. Van
Vielva, P.
Villa, F.
Wade, L.A.
Wandelt, B.D.
Wehus, I.K.
Yvon, D.
Zacchei, A.
Zonca, A.
Planck 2015 results. XVIII. Background geometry & topology
title Planck 2015 results. XVIII. Background geometry & topology
title_full Planck 2015 results. XVIII. Background geometry & topology
title_fullStr Planck 2015 results. XVIII. Background geometry & topology
title_full_unstemmed Planck 2015 results. XVIII. Background geometry & topology
title_short Planck 2015 results. XVIII. Background geometry & topology
title_sort planck 2015 results. xviii. background geometry & topology
topic Astrophysics and Astronomy
url https://dx.doi.org/10.1051/0004-6361/201525829
http://cds.cern.ch/record/1987170
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