Pith. sign in

REVIEW

Planck Early Results XXVI: Detection with Planck and confirmation by XMM-Newton of PLCK G266.6-27.3, an exceptionally X-ray luminous and massive galaxy cluster at z~1

Not yet reviewed by Pith; the record is open.

This paper has not been read by Pith yet. Machine review is queued; the pith claim, tier, and objections will appear here once it completes.

SPECIMEN: schema-true, not a live event

T0 review · schema-true

One-sentence machine reading of the paper's core claim.

pith:XXXXXXXX · record.json · timestamp

arxiv 1106.1376 v3 pith:ODUJJE2M submitted 2011-06-07 astro-ph.CO

Planck Collaboration: N. Aghanim , M. Arnaud , M. Ashdown , F. Atrio-Barandela , J. Aumont , C. Baccigalupi , A. Balbi , A. J. Banday
show 183 more authors
R. B. Barreiro J. G. Bartlett E. Battaner K. Benabed A. Benoît J.-P. Bernard M. Bersanelli R. Bhatia H. Böhringer A. Bonaldi J. R. Bond S. Borgani J. Borrill F. R. Bouchet M. L. Brown C. Burigana P. Cabella C. M. Cantalupo B. Cappellini P. Carvalho A. Catalano L. Cayón L.-Y Chiang C. Chiang G. Chon P. R. Christensen E. Churazov D. L. Clements S. Colafrancesco S. Colombi B. P. Crill F. Cuttaia A. Da Silva H. Dahle L. Danese O. D'Arcangelo R. J. Davis P. de Bernardis G. de Gasperis G. de Zotti J. Delabrouille J.-M. Delouis J. Démoclès F.-X. Désert C. Dickinson J. M. Diego H. Dole S. Donzelli O. Doré M. Douspis X. Dupac G. Efstathiou T. A. En{ss}lin H. K. Eriksen F. Finelli I. Flores-Cacho O. Forni P. Fosalba M. Frailis E. Franceschi S. Fromenteau S. Galeotta K. Ganga R. T. Génova-Santos M. Giard J. González-Nuevo R. González-Riestra K. M. Górski A. Gregorio A. Gruppuso F. K. Hansen D. Harrison P. Heinämäki C. Hernández-Monteagudo S. R. Hildebrandt E. Hivon M. Hobson G. Hurier A. H. Jaffe W. C. Jones M. Juvela E. Keihänen R. Keskitalo T. S. Kisner R. Kneissl H. Kurki-Suonio G. Lagache A. Lähteenmäki J.-M. Lamarre A. Lasenby C. R. Lawrence M. Le Jeune S. Leach R. Leonardi C. Leroy A. Liddle P. B. Lilje M. López-Caniego G. Luzzi J. F. Macías-Pérez D. Maino N. Mandolesi F. Marleau E. Martínez-González S. Masi S. Matarrese P. Mazzotta P. R. Meinhold A. Melchiorri J.-B. Melin L. Mendes A. Mennella M.-A. Miville-Deschênes A. Moneti L. Montier G. Morgante D. Mortlock D. Munshi P. Naselsky P. Natoli J. Nevalainen H. U. N{o}rgaard-Nielsen F. Noviello D. Novikov I. Novikov I. J. O'Dwyer S. Osborne R. Paladini F. Pasian G. Patanchon T. J. Pearson O. Perdereau L. Perotto F. Perrotta F. Piacentini E. Pierpaoli R. Piffaretti P. Platania E. Pointecouteau G. Polenta N. Ponthieu L. Popa T. Poutanen G. W. Pratt G. Prézeau S. Prunet J.-L. Puget J. P. Rachen R. Rebolo M. Reinecke C. Renault S. Ricciardi T. Riller I. Ristorcelli G. Rocha J. A. Rubiño-Martín E. Saar M. Sandri G. Savini B. M. Schaefer D. Scott G. F. Smoot J.-L. Starck D. Sutton J.-F. Sygnet J. A. Tauber L. Terenzi L. Toffolatti M. Tomasi M. Tristram M. Türler L. Valenziano P. Vielva F. Villa N. Vittorio L. A. Wade B. D. Wandelt J. Weller S. D. M. White M. White D. Yvon A. Zacchei A. Zonca
This is my paper
classification astro-ph.CO
keywords clusterclustersg266planckplckgalaxycandidatehigh-redshift
verification ladder T0 review T1 audit T2 compute T3 formal
0 comments
read the original abstract

We present first results on PLCK G266.6-27.3, a galaxy cluster candidate detected at a signal-to-noise ratio of 5 in the Planck All Sky survey. An XMM-Newton validation observation has allowed us to confirm that the candidate is a bona fide galaxy cluster. With these X-ray data we measure an accurate redshift, z = 0.94 +/- 0.02, and estimate the cluster mass to be M_500 = (7.8 +/- 0.8)e+14 solar masses. PLCK G266.6-27.3 is an exceptional system: its luminosity of L_X(0.5-2.0 keV)=(1.4 +/- 0.05)e+45 erg/s, equals that of the two most luminous known clusters in the z > 0.5 universe, and it is one of the most massive clusters at z~1. Moreover, unlike the majority of high-redshift clusters, PLCK G266.6-27.3 appears to be highly relaxed. This observation confirms Planck's capability of detecting high-redshift, high-mass clusters, and opens the way to the systematic study of population evolution in the exponential tail of the mass function.

Discussion (0). Sign in to comment.

Pith tools