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LIBRIS Formathandbok  (Information om MARC21)
FältnamnIndikatorerMetadata
00009008naa a2202017 4500
001oai:DiVA.org:su-188740
003SwePub
008210118s2020 | |||||||||||000 ||eng|
024a https://urn.kb.se/resolve?urn=urn:nbn:se:su:diva-1887402 URI
024a https://doi.org/10.1051/0004-6361/2020380732 DOI
040 a (SwePub)su
041 a engb eng
042 9 SwePub
072 7a ref2 swepub-contenttype
072 7a art2 swepub-publicationtype
100a Akrami, Y.4 aut
2451 0a Planck intermediate results :b LVII. Joint Planck LFI and HFI data processing
264 c 2020-11-11
264 1b EDP Sciences,c 2020
338 a print2 rdacarrier
520 a We present the NPIPE processing pipeline, which produces calibrated frequency maps in temperature and polarization from data from the Planck Low Frequency Instrument (LFI) and High Frequency Instrument (HFI) using high-performance computers. NPIPE represents a natural evolution of previous Planck analysis efforts, and combines some of the most powerful features of the separate LFI and HFI analysis pipelines. For example, following the LFI 2018 processing procedure, NPIPE uses foreground polarization priors during the calibration stage in order to break scanning-induced degeneracies. Similarly, NPIPE employs the HFI 2018 time-domain processing methodology to correct for bandpass mismatch at all frequencies. In addition, NPIPE introduces several improvements, including, but not limited to: inclusion of the 8% of data collected during repointing manoeuvres; smoothing of the LFI reference load data streams; in-flight estimation of detector polarization parameters; and construction of maximally independent detector-set split maps. For component-separation purposes, important improvements include: maps that retain the CMB Solar dipole, allowing for high-precision relative calibration in higher-level analyses; well-defined single-detector maps, allowing for robust CO extraction; and HFI temperature maps between 217 and 857 GHz that are binned into 0′.9 pixels (Nside = 4096), ensuring that the full angular information in the data is represented in the maps even at the highest Planck resolutions. The net effect of these improvements is lower levels of noise and systematics in both frequency and component maps at essentially all angular scales, as well as notably improved internal consistency between the various frequency channels. Based on the NPIPE maps, we present the first estimate of the Solar dipole determined through component separation across all nine Planck frequencies. The amplitude is (3366.6 ± 2.7) μK, consistent with, albeit slightly higher than, earlier estimates. From the large-scale polarization data, we derive an updated estimate of the optical depth of reionization of τ = 0.051 ± 0.006, which appears robust with respect to data and sky cuts. There are 600 complete signal, noise and systematics simulations of the full-frequency and detector-set maps. As a Planck first, these simulations include full time-domain processing of the beam-convolved CMB anisotropies. The release of NPIPE maps and simulations is accompanied with a complete suite of raw and processed time-ordered data and the software, scripts, auxiliary data, and parameter files needed to improve further on the analysis and to run matching simulations.
650 7a NATURVETENSKAPx Fysik0 (SwePub)1032 hsv//swe
650 7a NATURAL SCIENCESx Physical Sciences0 (SwePub)1032 hsv//eng
653 a cosmic background radiation
653 a cosmology: observations
653 a cosmological parameters
653 a Galaxy: general
653 a methods: data analysis
700a Andersen, K. J.4 aut
700a Ashdown, M.4 aut
700a Baccigalupi, C.4 aut
700a Ballardini, M.4 aut
700a Banday, A. J.4 aut
700a Barreiro, R. B.4 aut
700a Bartolo, N.4 aut
700a Basak, S.4 aut
700a Benabed, K.4 aut
700a Bernard, J. -P.4 aut
700a Bersanelli, M.4 aut
700a Bielewicz, P.4 aut
700a Bond, J. R.4 aut
700a Borrill, J.4 aut
700a Burigana, C.4 aut
700a Butler, R. C.4 aut
700a Calabrese, E.4 aut
700a Casaponsa, B.4 aut
700a Chiang, H. C.4 aut
700a Colombo, L. P. L.4 aut
700a Combet, C.4 aut
700a Crill, B. P.4 aut
700a Cuttaia, F.4 aut
700a de Bernardis, P.4 aut
700a de Rosa, A.4 aut
700a de Zotti, G.4 aut
700a Delabrouille, J.4 aut
700a Di Valentino, E.4 aut
700a Diego, J. M.4 aut
700a Doré, O.4 aut
700a Douspis, M.4 aut
700a Dupac, X.4 aut
700a Eriksen, H. K.4 aut
700a Fernandez-Cobos, R.4 aut
700a Finelli, F.4 aut
700a Frailis, M.4 aut
700a Fraisse, A. A.4 aut
700a Franceschi, E.4 aut
700a Frolov, A.4 aut
700a Galeotta, S.4 aut
700a Galli, S.4 aut
700a Ganga, K.4 aut
700a Gerbino, M.4 aut
700a Ghosh, T.4 aut
700a González-Nuevo, J.4 aut
700a Górski, K. M.4 aut
700a Gruppuso, A.4 aut
700a Gudmundsson, Jón E.u Stockholms universitet,Oskar Klein-centrum för kosmopartikelfysik (OKC),Fysikum,Princeton University, USA4 aut0 (Swepub:su)jgudm
700a Handley, W.4 aut
700a Helou, G.4 aut
700a Herranz, D.4 aut
700a Hildebrandt, S. R.4 aut
700a Hivon, E.4 aut
700a Huang, Z.4 aut
700a Jaffe, A. H.4 aut
700a Jones, W. C.4 aut
700a Keihänen, E.4 aut
700a Keskitalo, R.4 aut
700a Kiiveri, K.4 aut
700a Kim, J.4 aut
700a Kisner, T. S.4 aut
700a Krachmalnicoff, N.4 aut
700a Kunz, M.4 aut
700a Kurki-Suonio, H.4 aut
700a Lasenby, A.4 aut
700a Lattanzi, M.4 aut
700a Lawrence, C. R.4 aut
700a Le Jeune, M.4 aut
700a Levrier, F.4 aut
700a Liguori, M.4 aut
700a Lilje, P. B.4 aut
700a Lilley, M.4 aut
700a Lindholm, V.4 aut
700a López-Caniego, M.4 aut
700a Lubin, P. M.4 aut
700a Macías-Pérez, J. F.4 aut
700a Maino, D.4 aut
700a Mandolesi, N.4 aut
700a Marcos-Caballero, A.4 aut
700a Maris, M.4 aut
700a Martin, P. G.4 aut
700a Martínez-González, E.4 aut
700a Matarrese, S.4 aut
700a Mauri, N.4 aut
700a McEwen, J. D.4 aut
700a Meinhold, P. R.4 aut
700a Mennella, A.4 aut
700a Migliaccio, M.4 aut
700a Mitra, S.4 aut
700a Molinari, D.4 aut
700a Montier, L.4 aut
700a Morgante, G.4 aut
700a Moss, A.4 aut
700a Natoli, P.4 aut
700a Paoletti, D.4 aut
700a Partridge, B.4 aut
700a Patanchon, G.4 aut
700a Pearson, D.4 aut
700a Pearson, T. J.4 aut
700a Perrotta, F.4 aut
700a Piacentini, F.4 aut
700a Polenta, G.4 aut
700a Rachen, J. P.4 aut
700a Reinecke, M.4 aut
700a Remazeilles, M.4 aut
700a Renzi, A.4 aut
700a Rocha, G.4 aut
700a Rosset, C.4 aut
700a Roudier, G.4 aut
700a Rubiño-Martin, J. A.4 aut
700a Ruiz-Granados, B.4 aut
700a Salvati, L.4 aut
700a Savelainen, M.4 aut
700a Scott, D.4 aut
700a Sirignano, C.4 aut
700a Sirri, G.4 aut
700a Spencer, L. D.4 aut
700a Suur-Uski, A-S.4 aut
700a Svalheim, L. T.4 aut
700a Tauber, J. A.4 aut
700a Tavagnacco, D.4 aut
700a Tenti, M.4 aut
700a Terenzi, L.4 aut
700a Thommesen, H.4 aut
700a Toffolatti, L.4 aut
700a Tomasi, M.4 aut
700a Tristram, M.4 aut
700a Trombetti, T.4 aut
700a Valiviita, J.4 aut
700a Van Tent, B.4 aut
700a Vielva, P.4 aut
700a Villa, F.4 aut
700a Vittorio, N.4 aut
700a Wandelt, B. D.4 aut
700a Wehus, I. K.4 aut
700a Zacchei, A.4 aut
700a Zonca, A.4 aut
710a Stockholms universitetb Oskar Klein-centrum för kosmopartikelfysik (OKC)4 org
773t Astronomy and Astrophysicsd : EDP Sciencesg 643q 643x 0004-6361x 1432-0746
856u https://doi.org/10.1051/0004-6361/202038073y Fulltext
856u https://www.aanda.org/articles/aa/pdf/2020/11/aa38073-20.pdf
8564 8u https://urn.kb.se/resolve?urn=urn:nbn:se:su:diva-188740
8564 8u https://doi.org/10.1051/0004-6361/202038073

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Akrami, Y.
Andersen, K. J.
Ashdown, M.
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