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Planck 2013 results. XXX. Cosmic infrared background measurements and implications for star formation
We present new measurements of CIB anisotropies using Planck. Combining HFI data with IRAS, the angular auto- and cross frequency power spectrum is measured from 143 to 3000 GHz, and the auto-bispectrum from 217 to 545 GHz. The total areas used to compute the CIB power spectrum and bispectrum are ab...
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Lenguaje: | eng |
Publicado: |
2013
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1051/0004-6361/201322093 http://cds.cern.ch/record/1596584 |
_version_ | 1780931178313809920 |
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author | Ade, P A R Aghanim, N Armitage-Caplan, C Arnaud, M Ashdown, M Atrio-Barandela, F Aumont, J Baccigalupi, C Banday, A J Barreiro, R B Bartlett, J G Battaner, E Benabed, K Benoît, A Benoit-Lévy, A Bernard, J -P Bersanelli, M Bethermin, M Bielewicz, P Blagrave, K Bobin, J Bock, J J Bonaldi, A Bond, J R Borrill, J Bouchet, F R Boulanger, F Bridges, M Bucher, M Burigana, C Butler, R C Cardoso, J -F Catalano, A Challinor, A Chamballu, A Chen, X Chiang, H C Chiang, L -Y Christensen, P R Church, S Clements, D L Colombi, S Colombo, L P L 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 Delouis, J -M Désert, F -X Dickinson, C Diego, J M Dole, H Donzelli, S Doré, O Douspis, M Dupac, X Efstathiou, G Enßlin, T A Eriksen, H K Finelli, F Forni, O Frailis, M Franceschi, E Galeotta, S Ganga, K Ghosh, T Giard, M Giraud-Héraud, Y González-Nuevo, J Górski, K M Gratton, S Gregorio, A Gruppuso, A Hansen, F K Hanson, D Harrison, D Helou, G 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 Jaffe, A H Jaffe, T R Jones, W C Juvela, M Kalberla, P Keihänen, E Kerp, J Keskitalo, R Kisner, T S Kneissl, R Knoche, J Knox, L Kunz, M Kurki-Suonio, H Lacasa, F Lagache, G Lähteenmäki, A Lamarre, J -M Langer, M Lasenby, A Laureijs, R J Lawrence, C R Leonardi, R León-Tavares, J Lesgourgues, J Liguori, M Lilje, P B Linden-Vørnle, M López-Caniego, M Lubin, P M Macías-Pérez, J F Maffei, B Maino, D Mandolesi, N Maris, M Marshall, D J Martin, P G Martínez-González, E Masi, S Matarrese, S Matthai, F Mazzotta, P Melchiorri, A Mendes, L Mennella, A Migliaccio, M Mitra, S Miville-Deschênes, M -A Moneti, A Montier, L Morgante, G Mortlock, D Munshi, D Murphy, J A Naselsky, P Nati, F Natoli, P Netterfield, C B Nørgaard-Nielsen, H U Noviello, F Novikov, D Novikov, I Osborne, S Oxborrow, C A Paci, F Pagano, L Pajot, F Paladini, R Paoletti, D Partridge, B Pasian, F Patanchon, G Perdereau, O Perotto, L Perrotta, F Piacentini, F Piat, M Pierpaoli, E Pietrobon, D Plaszczynski, S Pointecouteau, E Polenta, G Ponthieu, N Popa, L Poutanen, T Pratt, G W Prézeau, G Prunet, S Puget, J -L Rachen, J P Reach, W T Rebolo, R Reinecke, M Remazeilles, M Renault, C Ricciardi, S Riller, T Ristorcelli, I Rocha, G Rosset, C Roudier, G Rowan-Robinson, M Rubiño-Martín, J A Rusholme, B Sandri, M Santos, D Savini, G Scott, D Seiffert, M D Serra, P Shellard, E P S Spencer, L D Starck, J -L Stolyarov, V Stompor, R Sudiwala, R Sunyaev, R Sureau, F Sutton, D Suur-Uski, A -S Sygnet, J -F Tauber, J A Tavagnacco, D Terenzi, L Toffolatti, L Tomasi, M Tristram, M Tucci, M Tuovinen, J Türler, M Valenziano, L Valiviita, J Van Tent, B Vielva, P Villa, F Vittorio, N Wade, L A Wandelt, B D Welikala, N White, M White, S D M Winkel, B Yvon, D Zacchei, A Zonca, A |
author_facet | Ade, P A R Aghanim, N Armitage-Caplan, C Arnaud, M Ashdown, M Atrio-Barandela, F Aumont, J Baccigalupi, C Banday, A J Barreiro, R B Bartlett, J G Battaner, E Benabed, K Benoît, A Benoit-Lévy, A Bernard, J -P Bersanelli, M Bethermin, M Bielewicz, P Blagrave, K Bobin, J Bock, J J Bonaldi, A Bond, J R Borrill, J Bouchet, F R Boulanger, F Bridges, M Bucher, M Burigana, C Butler, R C Cardoso, J -F Catalano, A Challinor, A Chamballu, A Chen, X Chiang, H C Chiang, L -Y Christensen, P R Church, S Clements, D L Colombi, S Colombo, L P L 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 Delouis, J -M Désert, F -X Dickinson, C Diego, J M Dole, H Donzelli, S Doré, O Douspis, M Dupac, X Efstathiou, G Enßlin, T A Eriksen, H K Finelli, F Forni, O Frailis, M Franceschi, E Galeotta, S Ganga, K Ghosh, T Giard, M Giraud-Héraud, Y González-Nuevo, J Górski, K M Gratton, S Gregorio, A Gruppuso, A Hansen, F K Hanson, D Harrison, D Helou, G 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 Jaffe, A H Jaffe, T R Jones, W C Juvela, M Kalberla, P Keihänen, E Kerp, J Keskitalo, R Kisner, T S Kneissl, R Knoche, J Knox, L Kunz, M Kurki-Suonio, H Lacasa, F Lagache, G Lähteenmäki, A Lamarre, J -M Langer, M Lasenby, A Laureijs, R J Lawrence, C R Leonardi, R León-Tavares, J Lesgourgues, J Liguori, M Lilje, P B Linden-Vørnle, M López-Caniego, M Lubin, P M Macías-Pérez, J F Maffei, B Maino, D Mandolesi, N Maris, M Marshall, D J Martin, P G Martínez-González, E Masi, S Matarrese, S Matthai, F Mazzotta, P Melchiorri, A Mendes, L Mennella, A Migliaccio, M Mitra, S Miville-Deschênes, M -A Moneti, A Montier, L Morgante, G Mortlock, D Munshi, D Murphy, J A Naselsky, P Nati, F Natoli, P Netterfield, C B Nørgaard-Nielsen, H U Noviello, F Novikov, D Novikov, I Osborne, S Oxborrow, C A Paci, F Pagano, L Pajot, F Paladini, R Paoletti, D Partridge, B Pasian, F Patanchon, G Perdereau, O Perotto, L Perrotta, F Piacentini, F Piat, M Pierpaoli, E Pietrobon, D Plaszczynski, S Pointecouteau, E Polenta, G Ponthieu, N Popa, L Poutanen, T Pratt, G W Prézeau, G Prunet, S Puget, J -L Rachen, J P Reach, W T Rebolo, R Reinecke, M Remazeilles, M Renault, C Ricciardi, S Riller, T Ristorcelli, I Rocha, G Rosset, C Roudier, G Rowan-Robinson, M Rubiño-Martín, J A Rusholme, B Sandri, M Santos, D Savini, G Scott, D Seiffert, M D Serra, P Shellard, E P S Spencer, L D Starck, J -L Stolyarov, V Stompor, R Sudiwala, R Sunyaev, R Sureau, F Sutton, D Suur-Uski, A -S Sygnet, J -F Tauber, J A Tavagnacco, D Terenzi, L Toffolatti, L Tomasi, M Tristram, M Tucci, M Tuovinen, J Türler, M Valenziano, L Valiviita, J Van Tent, B Vielva, P Villa, F Vittorio, N Wade, L A Wandelt, B D Welikala, N White, M White, S D M Winkel, B Yvon, D Zacchei, A Zonca, A |
author_sort | Ade, P A R |
collection | CERN |
description | We present new measurements of CIB anisotropies using Planck. Combining HFI data with IRAS, the angular auto- and cross frequency power spectrum is measured from 143 to 3000 GHz, and the auto-bispectrum from 217 to 545 GHz. The total areas used to compute the CIB power spectrum and bispectrum are about 2240 and 4400 deg^2, respectively. After careful removal of the contaminants, and a complete study of systematics, the CIB power spectrum and bispectrum are measured with unprecedented signal to noise ratio from angular multipoles ell~150 to 2500, and ell~130 to 1100, respectively. Two approaches are developed for modelling CIB power spectrum anisotropies. The first approach takes advantage of the unique measurements by Planck at large angular scales, and models only the linear part of the power spectrum, with a mean bias of dark matter halos hosting dusty galaxies at a given redshift weighted by their contribution to the emissivities. The second approach is based on a model that associates star-forming galaxies with dark matter halos and their subhalos, using a parametrized relation between the dust-processed infrared luminosity and (sub-)halo mass. The two approaches simultaneously fit all auto- and cross- power spectra very well. We find that the star formation history is well constrained up to z~2. However, at higher redshift, the accuracy of the star formation history measurement is strongly degraded by the uncertainty in the spectral energy distribution of CIB galaxies. We also find that CIB galaxies have warmer temperatures as redshift increases. The CIB bispectrum is steeper than that expected from the power spectrum, although well fitted by a power law; this gives some information about the contribution of massive halos to the CIB bispectrum. |
id | cern-1596584 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2013 |
record_format | invenio |
spelling | cern-15965842021-05-03T20:32:37Zdoi:10.1051/0004-6361/201322093http://cds.cern.ch/record/1596584engAde, P A RAghanim, NArmitage-Caplan, CArnaud, MAshdown, MAtrio-Barandela, FAumont, JBaccigalupi, CBanday, A JBarreiro, R BBartlett, J GBattaner, EBenabed, KBenoît, ABenoit-Lévy, ABernard, J -PBersanelli, MBethermin, MBielewicz, PBlagrave, KBobin, JBock, J JBonaldi, ABond, J RBorrill, JBouchet, F RBoulanger, FBridges, MBucher, MBurigana, CButler, R CCardoso, J -FCatalano, AChallinor, AChamballu, AChen, XChiang, H CChiang, L -YChristensen, P RChurch, SClements, D LColombi, SColombo, L P LCouchot, FCoulais, ACrill, B PCurto, ACuttaia, FDanese, LDavies, R DDavis, R Jde Bernardis, Pde Rosa, Ade Zotti, GDelabrouille, JDelouis, J -MDésert, F -XDickinson, CDiego, J MDole, HDonzelli, SDoré, ODouspis, MDupac, XEfstathiou, GEnßlin, T AEriksen, H KFinelli, FForni, OFrailis, MFranceschi, EGaleotta, SGanga, KGhosh, TGiard, MGiraud-Héraud, YGonzález-Nuevo, JGórski, K MGratton, SGregorio, AGruppuso, AHansen, F KHanson, DHarrison, DHelou, GHenrot-Versillé, SHernández-Monteagudo, CHerranz, DHildebrandt, S RHivon, EHobson, MHolmes, W AHornstrup, AHovest, WHuffenberger, K MJaffe, A HJaffe, T RJones, W CJuvela, MKalberla, PKeihänen, EKerp, JKeskitalo, RKisner, T SKneissl, RKnoche, JKnox, LKunz, MKurki-Suonio, HLacasa, FLagache, GLähteenmäki, ALamarre, J -MLanger, MLasenby, ALaureijs, R JLawrence, C RLeonardi, RLeón-Tavares, JLesgourgues, JLiguori, MLilje, P BLinden-Vørnle, MLópez-Caniego, MLubin, P MMacías-Pérez, J FMaffei, BMaino, DMandolesi, NMaris, MMarshall, D JMartin, P GMartínez-González, EMasi, SMatarrese, SMatthai, FMazzotta, PMelchiorri, AMendes, LMennella, AMigliaccio, MMitra, SMiville-Deschênes, M -AMoneti, AMontier, LMorgante, GMortlock, DMunshi, DMurphy, J ANaselsky, PNati, FNatoli, PNetterfield, C BNørgaard-Nielsen, H UNoviello, FNovikov, DNovikov, IOsborne, SOxborrow, C APaci, FPagano, LPajot, FPaladini, RPaoletti, DPartridge, BPasian, FPatanchon, GPerdereau, OPerotto, LPerrotta, FPiacentini, FPiat, MPierpaoli, EPietrobon, DPlaszczynski, SPointecouteau, EPolenta, GPonthieu, NPopa, LPoutanen, TPratt, G WPrézeau, GPrunet, SPuget, J -LRachen, J PReach, W TRebolo, RReinecke, MRemazeilles, MRenault, CRicciardi, SRiller, TRistorcelli, IRocha, GRosset, CRoudier, GRowan-Robinson, MRubiño-Martín, J ARusholme, BSandri, MSantos, DSavini, GScott, DSeiffert, M DSerra, PShellard, E P SSpencer, L DStarck, J -LStolyarov, VStompor, RSudiwala, RSunyaev, RSureau, FSutton, DSuur-Uski, A -SSygnet, J -FTauber, J ATavagnacco, DTerenzi, LToffolatti, LTomasi, MTristram, MTucci, MTuovinen, JTürler, MValenziano, LValiviita, JVan Tent, BVielva, PVilla, FVittorio, NWade, L AWandelt, B DWelikala, NWhite, MWhite, S D MWinkel, BYvon, DZacchei, AZonca, APlanck 2013 results. XXX. Cosmic infrared background measurements and implications for star formationAstrophysics and AstronomyWe present new measurements of CIB anisotropies using Planck. Combining HFI data with IRAS, the angular auto- and cross frequency power spectrum is measured from 143 to 3000 GHz, and the auto-bispectrum from 217 to 545 GHz. The total areas used to compute the CIB power spectrum and bispectrum are about 2240 and 4400 deg^2, respectively. After careful removal of the contaminants, and a complete study of systematics, the CIB power spectrum and bispectrum are measured with unprecedented signal to noise ratio from angular multipoles ell~150 to 2500, and ell~130 to 1100, respectively. Two approaches are developed for modelling CIB power spectrum anisotropies. The first approach takes advantage of the unique measurements by Planck at large angular scales, and models only the linear part of the power spectrum, with a mean bias of dark matter halos hosting dusty galaxies at a given redshift weighted by their contribution to the emissivities. The second approach is based on a model that associates star-forming galaxies with dark matter halos and their subhalos, using a parametrized relation between the dust-processed infrared luminosity and (sub-)halo mass. The two approaches simultaneously fit all auto- and cross- power spectra very well. We find that the star formation history is well constrained up to z~2. However, at higher redshift, the accuracy of the star formation history measurement is strongly degraded by the uncertainty in the spectral energy distribution of CIB galaxies. We also find that CIB galaxies have warmer temperatures as redshift increases. The CIB bispectrum is steeper than that expected from the power spectrum, although well fitted by a power law; this gives some information about the contribution of massive halos to the CIB bispectrum.arXiv:1309.0382oai:cds.cern.ch:15965842013-09-02 |
spellingShingle | Astrophysics and Astronomy Ade, P A R Aghanim, N Armitage-Caplan, C Arnaud, M Ashdown, M Atrio-Barandela, F Aumont, J Baccigalupi, C Banday, A J Barreiro, R B Bartlett, J G Battaner, E Benabed, K Benoît, A Benoit-Lévy, A Bernard, J -P Bersanelli, M Bethermin, M Bielewicz, P Blagrave, K Bobin, J Bock, J J Bonaldi, A Bond, J R Borrill, J Bouchet, F R Boulanger, F Bridges, M Bucher, M Burigana, C Butler, R C Cardoso, J -F Catalano, A Challinor, A Chamballu, A Chen, X Chiang, H C Chiang, L -Y Christensen, P R Church, S Clements, D L Colombi, S Colombo, L P L 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 Delouis, J -M Désert, F -X Dickinson, C Diego, J M Dole, H Donzelli, S Doré, O Douspis, M Dupac, X Efstathiou, G Enßlin, T A Eriksen, H K Finelli, F Forni, O Frailis, M Franceschi, E Galeotta, S Ganga, K Ghosh, T Giard, M Giraud-Héraud, Y González-Nuevo, J Górski, K M Gratton, S Gregorio, A Gruppuso, A Hansen, F K Hanson, D Harrison, D Helou, G 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 Jaffe, A H Jaffe, T R Jones, W C Juvela, M Kalberla, P Keihänen, E Kerp, J Keskitalo, R Kisner, T S Kneissl, R Knoche, J Knox, L Kunz, M Kurki-Suonio, H Lacasa, F Lagache, G Lähteenmäki, A Lamarre, J -M Langer, M Lasenby, A Laureijs, R J Lawrence, C R Leonardi, R León-Tavares, J Lesgourgues, J Liguori, M Lilje, P B Linden-Vørnle, M López-Caniego, M Lubin, P M Macías-Pérez, J F Maffei, B Maino, D Mandolesi, N Maris, M Marshall, D J Martin, P G Martínez-González, E Masi, S Matarrese, S Matthai, F Mazzotta, P Melchiorri, A Mendes, L Mennella, A Migliaccio, M Mitra, S Miville-Deschênes, M -A Moneti, A Montier, L Morgante, G Mortlock, D Munshi, D Murphy, J A Naselsky, P Nati, F Natoli, P Netterfield, C B Nørgaard-Nielsen, H U Noviello, F Novikov, D Novikov, I Osborne, S Oxborrow, C A Paci, F Pagano, L Pajot, F Paladini, R Paoletti, D Partridge, B Pasian, F Patanchon, G Perdereau, O Perotto, L Perrotta, F Piacentini, F Piat, M Pierpaoli, E Pietrobon, D Plaszczynski, S Pointecouteau, E Polenta, G Ponthieu, N Popa, L Poutanen, T Pratt, G W Prézeau, G Prunet, S Puget, J -L Rachen, J P Reach, W T Rebolo, R Reinecke, M Remazeilles, M Renault, C Ricciardi, S Riller, T Ristorcelli, I Rocha, G Rosset, C Roudier, G Rowan-Robinson, M Rubiño-Martín, J A Rusholme, B Sandri, M Santos, D Savini, G Scott, D Seiffert, M D Serra, P Shellard, E P S Spencer, L D Starck, J -L Stolyarov, V Stompor, R Sudiwala, R Sunyaev, R Sureau, F Sutton, D Suur-Uski, A -S Sygnet, J -F Tauber, J A Tavagnacco, D Terenzi, L Toffolatti, L Tomasi, M Tristram, M Tucci, M Tuovinen, J Türler, M Valenziano, L Valiviita, J Van Tent, B Vielva, P Villa, F Vittorio, N Wade, L A Wandelt, B D Welikala, N White, M White, S D M Winkel, B Yvon, D Zacchei, A Zonca, A Planck 2013 results. XXX. Cosmic infrared background measurements and implications for star formation |
title | Planck 2013 results. XXX. Cosmic infrared background measurements and implications for star formation |
title_full | Planck 2013 results. XXX. Cosmic infrared background measurements and implications for star formation |
title_fullStr | Planck 2013 results. XXX. Cosmic infrared background measurements and implications for star formation |
title_full_unstemmed | Planck 2013 results. XXX. Cosmic infrared background measurements and implications for star formation |
title_short | Planck 2013 results. XXX. Cosmic infrared background measurements and implications for star formation |
title_sort | planck 2013 results. xxx. cosmic infrared background measurements and implications for star formation |
topic | Astrophysics and Astronomy |
url | https://dx.doi.org/10.1051/0004-6361/201322093 http://cds.cern.ch/record/1596584 |
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planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT herranzd planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT hildebrandtsr planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT hivone planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT hobsonm planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT holmeswa planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT hornstrupa planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT hovestw planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT huffenbergerkm planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT jaffeah planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT 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knoxl planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT kunzm planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT kurkisuonioh planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT lacasaf planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT lagacheg planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT lahteenmakia planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT lamarrejm planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT langerm planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT lasenbya planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT laureijsrj planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation 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AT noviellof planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT novikovd planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT novikovi planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT osbornes planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT oxborrowca planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT pacif planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT paganol planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT pajotf planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT paladinir planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT paolettid planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation 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pugetjl planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT rachenjp planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT reachwt planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT rebolor planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT reineckem planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT remazeillesm planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT renaultc planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT ricciardis planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT rillert planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT ristorcellii planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT rochag planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT rossetc planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT roudierg planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT rowanrobinsonm planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT rubinomartinja planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT rusholmeb planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT sandrim planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT santosd planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT savinig planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT 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tristramm planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT tuccim planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT tuovinenj planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT turlerm planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT valenzianol planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT valiviitaj planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT vantentb planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT vielvap planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT villaf planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT vittorion planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT wadela planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT wandeltbd planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT welikalan planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT whitem planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT whitesdm planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT winkelb planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT yvond planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT zaccheia planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation AT zoncaa planck2013resultsxxxcosmicinfraredbackgroundmeasurementsandimplicationsforstarformation |