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Planck 2013 results. I. Overview of products and scientific results

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dc.contributor.author Tauber J.
dc.contributor.author Ade P.
dc.contributor.author Aghanim N.
dc.contributor.author Alves M.
dc.contributor.author Armitage-Caplan C.
dc.contributor.author Arnaud M.
dc.contributor.author Ashdown M.
dc.contributor.author Atrio-Barandela F.
dc.contributor.author Aumont J.
dc.contributor.author Aussel H.
dc.contributor.author Baccigalupi C.
dc.contributor.author Banday A.
dc.contributor.author Barreiro R.
dc.contributor.author Barrena R.
dc.contributor.author Bartelmann M.
dc.contributor.author Bartlett J.
dc.contributor.author Bartolo N.
dc.contributor.author Basak S.
dc.contributor.author Battaner E.
dc.contributor.author Battye R.
dc.contributor.author Benabed K.
dc.contributor.author Benoît A.
dc.contributor.author Benoit-Lévy A.
dc.contributor.author Bernard J.
dc.contributor.author Bersanelli M.
dc.contributor.author Bertincourt B.
dc.contributor.author Bethermin M.
dc.contributor.author Bielewicz P.
dc.contributor.author Bikmaev I.
dc.contributor.author Blanchard A.
dc.contributor.author Bobin J.
dc.contributor.author Bock J.
dc.contributor.author Böhringer H.
dc.contributor.author Bonaldi A.
dc.contributor.author Bonavera L.
dc.contributor.author Bond J.
dc.contributor.author Borrill J.
dc.contributor.author Bouchet F.
dc.contributor.author Boulanger F.
dc.contributor.author Bourdin H.
dc.contributor.author Bowyer J.
dc.contributor.author Bridges M.
dc.contributor.author Brown M.
dc.contributor.author Bucher M.
dc.contributor.author Burenin R.
dc.contributor.author Burigana C.
dc.contributor.author Butler R.
dc.contributor.author Calabrese E.
dc.contributor.author Cappellini B.
dc.contributor.author Cardoso J.
dc.contributor.author Carr R.
dc.contributor.author Carvalho P.
dc.contributor.author Casale M.
dc.contributor.author Castex G.
dc.contributor.author Catalano A.
dc.contributor.author Challinor A.
dc.contributor.author Chamballu A.
dc.contributor.author Chary R.
dc.contributor.author Chen X.
dc.contributor.author Chiang H.
dc.contributor.author Chiang L.
dc.contributor.author Chon G.
dc.contributor.author Christensen P.
dc.contributor.author Churazov E.
dc.contributor.author Church S.
dc.contributor.author Clemens M.
dc.contributor.author Clements D.
dc.contributor.author Colombi S.
dc.contributor.author Colombo L.
dc.date.accessioned 2018-09-18T20:01:48Z
dc.date.available 2018-09-18T20:01:48Z
dc.date.issued 2014
dc.identifier.issn 0004-6361
dc.identifier.uri https://dspace.kpfu.ru/xmlui/handle/net/135880
dc.description.abstract © 2014 ESO. The European Space Agency's Planck satellite, dedicated to studying the early Universe and its subsequent evolution, was launched 14 May 2009 and has been scanning the microwave and submillimetre sky continuously since 12 August 2009. In March 2013, ESA and the Planck Collaboration released the initial cosmology products based on the first 15.5 months of Planck data, along with a set of scientific and technical papers and a web-based explanatory supplement. This paper gives an overview of the mission and its performance, the processing, analysis, and characteristics of the data, the scientific results, and the science data products and papers in the release. The science products include maps of the cosmic microwave background (CMB) and diffuse extragalactic foregrounds, a catalogue of compact Galactic and extragalactic sources, and a list of sources detected through the Sunyaev-Zeldovich effect. The likelihood code used to assess cosmological models against the Planck data and a lensing likelihood are described. Scientific results include robust support for the standard six-parameter ΛCDM model of cosmology and improved measurements of its parameters, including a highly significant deviation from scale invariance of the primordial power spectrum. The Planck values for these parameters and others derived from them are significantly different from those previously determined. Several large-scale anomalies in the temperature distribution of the CMB, first detected by WMAP, are confirmed with higher confidence. Planck sets new limits on the number and mass of neutrinos, and has measured gravitational lensing of CMB anisotropies at greater than 25σ. Planck finds no evidence for non-Gaussianity in the CMB. Planck's results agree well with results from the measurements of baryon acoustic oscillations. Planck finds a lower Hubble constant than found in some more local measures. Some tension is also present between the amplitude of matter fluctuations (σ8) derived from CMB data and that derived from Sunyaev-Zeldovich data. The Planck and WMAP power spectra are offset from each other by an average level of about 2% around the first acoustic peak. Analysis of Planck polarization data is not yet mature, therefore polarization results are not released, although the robust detection of E-mode polarization around CMB hot and cold spots is shown graphically.
dc.relation.ispartofseries Astronomy and Astrophysics
dc.subject Cosmic background radiation
dc.subject Cosmology: observations
dc.subject Instrumentation: detectors
dc.subject Space vehicles: instruments
dc.title Planck 2013 results. I. Overview of products and scientific results
dc.type Article
dc.relation.ispartofseries-volume 571
dc.collection Публикации сотрудников КФУ
dc.source.id SCOPUS00046361-2014-571-SID84908546152


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