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<i>Planck</i>2015 results

Astronomy and Astrophysics · 2015 · Vol. 594 · pp. A27–A27
P. A. R. AdeN. AghanimM. ArnaudM. AshdownJ. AumontC. BaccigalupiA. J. BandayR. B. BarreiroR. BarrenaJ. G. BartlettN. BartoloE. BattanerRichard A. BattyeK. BenabedA. Benoı̂tA. Benoit-LévyJ. P. BernardM. BersanelliP. BielewiczI. BikmaevH. BöhringerA. BonaldiL. BonaveraJ. R. BondJ. BorrillF. R. BouchetM. BucherR. BureninC. BuriganaR. C. ButlerE. CalabreseJ.-F. CardosoP. CarvalhoA. CatalanoA. ChallinorA. ChamballuRanga‐Ram CharyH. C. ChiangG. ChonP. R. ChristensenD. L. ClementsS. ColombiL. P. L. ColomboCéline CombetB. ComisF. CouchotA. CoulaisB. P. CrillA. CurtoF. CuttaiaH. DahleL. DaneseR. D. DaviesRoger J. DavisP. de BernardisA. de RosaG. de ZottiG. de ZottiF.–X. DésertC. L. DickinsonJ. M. DiegoK. DolagH. DoleS. DonzelliO. DoréM. DouspisA. DucoutX. DupacG. EfstathiouPeter EisenhardtF. ElsnerT. A. EnßlinH. K. EriksenÉ. FalgaroneJ. FergussonF. FerozA. FerragamoF. Finelli⋆O. ForniM. FrailisA. A. FraisseE. FranceschiA. FrejselS. GaleottaS. GalliK. GangaR. T. Génova-SantosM. GiardY. Giraud–HéraudE. GjerløwJ. González-NuevoK. M. GórskiK. GraingeS. GrattonA. GregorioA. GruppusoJ. E. GudmundssonF. K. HansenD. HansonD. L. HarrisonA. HempelS. Henrot–VersilléC. Hernández-MonteagudoD. HerranzS. R. HildebrandtE. HivonM. HobsonW. A. HolmesA. HornstrupW. HovestK. M. HuffenbergerG. HurierAndrew H. JaffeT. R. JaffeT. JinW. C. JonesM. JuvelaE. KeihänenR. KeskitaloI. KhamitovT. S. KisnerR. KneißlJ. KnocheM. KunzH. Kurki‐SuonioG. LagacheJ.‐M. LamarreA. LasenbyM. LattanziC. R. LawrenceR. LeonardiJ. LesgourguesF. LevrierM. LiguoriP. B. LiljeM. Linden-VørnleM. López-CaniegoP. M. LubinJ. F. Macías–PérezG. MaggioD. MainoD. S. Y. MakN. MandolesiA. MangilliP. G. MartinE. Martínez-GonzálezS. MasiS. MatarreseP. MazzottaP. McGeheeY. MellierA. MelchiorriJ.‐B. MelinL. MendesA. MennellaM. MigliaccioS. MitraM.-A. Miville-DeschênesA. MonetiL. MontierG. MorganteD. MortlockA. MossD. MunshiJ. A. MurphyP. NaselskyA. NastasiF. NatiP. NatoliC. B. NetterfieldH. U. Nørgaard-NielsenF. NovielloD. NovikovI. NovikovM. OlamaieC. A. OxborrowF. PaciL. PaganoFrançois PajotD. PaolettiF. PasianG. PatanchonT. J. PearsonO. PerdereauL. PerottoY. C. PerrottF. PerrottaV. PettorinoF. PiacentiniM. PiatE. PierpaoliD. PietrobonS. PlaszczynskiÉ. PointecouteauG. PolentaG. W. PrattG. PrézeauS. PrunetJ.‐L. PugetJ. P. RachenW. T. ReachR. RéboloM. ReineckeM. RemazeillesC. RenaultA. RenziI. RistorcelliG. RochaC. RossetM. RossettiG. RoudierEduardo RozoJ. A. Rubiño-MartínC. RumseyB. RusholmeE. S. RykoffM. SandriD. SantosRichard D. E. SaundersМ. СавелайненG. SaviniMichel P. SchammelD. ScottM. D. SeiffertE. P. S. ShellardT. W. ShimwellL. D. SpencerS. A. StanfordDaniel SternV. StolyarovR. StomporA. StreblyanskaR. SudiwalaR. SunyaevD. SuttonA.-S. Suur-UskiJ.-F. SygnetJ. A. TauberL. TerenziL. ToffolattiM. TomasiD. TramonteM. TristramM. TucciJ. TuovinenG. UmanaL. ValenzianoJ. VäliviitaB. Van TentP. VielvaF. VillaL. A. WadeB. D. WandeltI. K. WehusS. D. M. WhiteE. L. WrightD. YvonA. ZaccheiA. Zonca

Abstract

We present the all-sky Planck catalogue of Sunyaev-Zeldovich (SZ) sources detected from the 29 month full-mission data. The catalogue (PSZ2) is the largest SZ-selected sample of galaxy clusters yet produced and the deepest systematic all-sky surveyof galaxy clusters. It contains 1653 detections, of which 1203 are confirmed clusters with identified counterparts in external data sets, and is the first SZ-selected cluster survey containing >103 confirmed clusters. We present a detailed analysis of the survey selection function in terms of its completeness and statistical reliability, placing a lower limit of 83% on the purity. Using simulations, we find that the estimates of the SZ strength parameter Y5R500are robust to pressure-profile variation and beam systematics, but accurate conversion to Y500 requires the use of prior information on the cluster extent. We describe the multi-wavelength search for counterparts in ancillary data, which makes use of radio, microwave, infra-red, optical, and X-ray data sets, and which places emphasis on the robustness of the counterpart match. We discuss the physical properties of the new sample and identify a population of low-redshift X-ray under-luminous clusters revealed by SZ selection. These objects appear in optical and SZ surveys with consistent properties for their mass, but are almost absent from ROSAT X-ray selected samples.

Cosmology and Gravitation TheoriesDark Matter and Cosmic PhenomenaGalaxies: Formation, Evolution, PhenomenaPhysicsPlanckAstrophysicsAstronomyPlanck energyPlanck scaleQuantum mechanics

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • National Aeronautics and Space Administration
  • Alfred P. Sloan Foundation
  • California Institute of Technology
  • UK Space Agency
  • University of Cambridge
  • Science Foundation Ireland
  • Partnership for Advanced Computing in Europe AISBL
  • Centre National d’Etudes Spatiales
  • Tekes
  • Max-Planck-Gesellschaft
  • China Scholarship Council
  • Centre National de la Recherche Scientifique
  • Ministério da Ciência, Tecnologia e Ensino Superior
  • Office of Science
  • Jet Propulsion Laboratory
  • Science and Technology Facilities Council
  • Fundação para a Ciência e a Tecnologia
  • Institut National de Physique Nucléaire et de Physique des Particules
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<i>Planck</i>2015 results
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