We present the Sunyaev-Zeldovich (SZ) signal-to-richness scaling relation (Y-500 - N-200) for the MaxBCG cluster catalogue. Employing a multi-frequency matched filter on the Planck sky maps, we measure the SZ signal for each cluster by adapting the filter according to weak-lensing calibrated mass-richness relations (N-200 - M-500). We bin our individual measurements and detect the SZ signal down to the lowest richness systems (N-200 = 10) with high significance, achieving a detection of the SZ signal in systems with mass as low as M-500 approximate to 5 x 10(13) M-circle dot. The observed Y-500 - N-200 relation is well modeled by a power law over the full richness range. It has a lower normalisation at given N-200 than predicted based on X-ray models and published mass-richness relations. An X-ray subsample, however, does conform to the predicted scaling, and model predictions do reproduce the relation between our measured bin-average SZ signal and measured bin-average X-ray luminosities. At fixed richness, we find an intrinsic dispersion in the Y-500 - N-200 relation of 60% rising to of order 100% at low richness. Thanks to its all-sky coverage, Planck provides observations for more than 13 000 MaxBCG clusters and an unprecedented SZ/optical data set, extending the list of known cluster scaling laws to include SZ-optical properties. The data set offers essential clues for models of galaxy formation. Moreover, the lower normalisation of the SZ-mass relation implied by the observed SZ-richness scaling has important consequences for cluster physics and cosmological studies with SZ clusters.

Planck early results. XII. Cluster Sunyaev-Zeldovich optical scaling relations

NATOLI, Paolo;
2011

Abstract

We present the Sunyaev-Zeldovich (SZ) signal-to-richness scaling relation (Y-500 - N-200) for the MaxBCG cluster catalogue. Employing a multi-frequency matched filter on the Planck sky maps, we measure the SZ signal for each cluster by adapting the filter according to weak-lensing calibrated mass-richness relations (N-200 - M-500). We bin our individual measurements and detect the SZ signal down to the lowest richness systems (N-200 = 10) with high significance, achieving a detection of the SZ signal in systems with mass as low as M-500 approximate to 5 x 10(13) M-circle dot. The observed Y-500 - N-200 relation is well modeled by a power law over the full richness range. It has a lower normalisation at given N-200 than predicted based on X-ray models and published mass-richness relations. An X-ray subsample, however, does conform to the predicted scaling, and model predictions do reproduce the relation between our measured bin-average SZ signal and measured bin-average X-ray luminosities. At fixed richness, we find an intrinsic dispersion in the Y-500 - N-200 relation of 60% rising to of order 100% at low richness. Thanks to its all-sky coverage, Planck provides observations for more than 13 000 MaxBCG clusters and an unprecedented SZ/optical data set, extending the list of known cluster scaling laws to include SZ-optical properties. The data set offers essential clues for models of galaxy formation. Moreover, the lower normalisation of the SZ-mass relation implied by the observed SZ-richness scaling has important consequences for cluster physics and cosmological studies with SZ clusters.
2011
N., Aghanim; M., Arnaud; M., Ashdown; J., Aumont; C., Baccigalupi; A., Balbi; A. J., Banday; R. B., Barreiro; M., Bartelmann; J. G., Bartlett; E., Battaner; K., Benabed; A., Benoit; J. . ., P.; M., Bersanelli; R., Bhatia; J. J., Bock; A., Bonaldi; J. R., Bond; J., Borrill; F. R., Bouchet; M. L., Brown; M., Bucher; C., Burigana; P., Cabella; J. . ., F.; A., Catalano; L., Cayon; A., Challinor; A., Chamballu; L. . ., Y.; C., Chiang; G., Chon; P. R., Christensen; E., Churazov; D. L., Clements; S., Colafrancesco; S., Colombi; F., Couchot; A., Coulais; B. P., Crill; F., Cuttaia; A. D., Silva; H., Dahle; L., Danese; R. J., Davis; P. d., Bernardis; G. d., Gasperis; A. d., Rosa; G. d., Zotti; J., Delabrouille; J. . . M., F. . . X.; J. M., Diego; K., Dolag; S., Donzelli; O., Dore; U., Doerl; M., Douspis; X., Dupac; G., Efstathiou; T. A., Ensslin; F., Finelli; I., Flores Cacho; O., Forni; M., Frailis; E., Franceschi; S., Fromenteau; S., Galeotta; K., Ganga; R. T., Genova Santos; M., Giard; G., Giardino; Y., Giraud Heraud; J., Gonzalez Nuevo; K. M., Gorski; S., Gratton; A., Gregorio; A., Gruppuso; D., Harrison; S., Henrot Versille; C., Hernandez Monteagudo; D., Herranz; S. R., Hildebrandt; E., Hivon; M., Hobson; W. A., Holmes; W., Hovest; R. J., Hoyland; K. M., Huffenberger; A. H., Jaffe; W. C., Jones; M., Juvela; E., Keihanen; R., Keskitalo; T. S., Kisner; R., Kneissl; L., Knox; H., Kurki Suonio; G., Lagache; J. . ., M.; A., Lasenby; R. J., Laureijs; C. R., Lawrence; S., Leach; R., Leonardi; M., Linden Vornle; M., Lopez Caniego; P. M., Lubin; J. F., Macias Perez; C. J., Mactavish; B., Maffei; D., Maino; N., Mandolesi; R., Mann; M., Maris; F., Marleau; E., Martinez Gonzalez; S., Masi; S., Matarrese; F., Matthai; P., Mazzotta; S., Mei; A., Melchiorri; J. . ., B.; L., Mendes; A., Mennella; S., Mitra; M. . ., A.; A., Moneti; L., Montier; G., Morgante; D., Mortlock; D., Munshi; A., Murphy; P., Naselsky; Natoli, Paolo; C. B., Netterfield; H. U., Norgaard Nielsen; F., Noviello; D., Novikov; I., Novikov; I. J., O'Dwyer; S., Osborne; F., Pajot; F., Pasian; G., Patanchon; O., Perdereau; L., Perotto; F., Perrotta; F., Piacentini; M., Piat; E., Pierpaoli; R., Piffaretti; S., Plaszczynski; E., Pointecouteau; G., Polenta; N., Ponthieu; T., Poutanen; G. W., Pratt; G., Prezeau; S., Prunet; J. . ., L.; R., Rebolo; M., Reinecke; C., Renault; S., Ricciardi; T., Riller; I., Ristorcelli; G., Rocha; C., Rosset; J. A., Rubino Martin; B., Rusholme; M., Sandri; G., Savini; B. M., Schaefer; D., Scott; M. D., Seiffert; P., Shellard; G. F., Smoot; J. . ., L.; F., Stivoli; V., Stolyarov; R., Sudiwala; R., Sunyaev; J. . ., F.; J. A., Tauber; L., Terenzi; L., Toffolatti; M., Tomasi; J. . ., P.; M., Tristram; J., Tuovinen; L., Valenziano; L., Vibert; P., Vielva; F., Villa; N., Vittorio; B. D., Wandelt; S. D., M.; M., White; D., Yvon; A., Zacchei; A., Zonca
File in questo prodotto:
Non ci sono file associati a questo prodotto.

I documenti in SFERA sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11392/1731934
 Attenzione

Attenzione! I dati visualizzati non sono stati sottoposti a validazione da parte dell'ateneo

Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 46
  • ???jsp.display-item.citation.isi??? 99
social impact