Planck-cmb-allsky

S-COSMOS: The Spitzer Legacy Survey of the Hubble Space Telescope ACS 2 deg2 COSMOS Field I: Survey Strategy and First Analysis

September 2007 • 2007ApJS..172...86S

Authors • Sanders, D. B. • Salvato, M. • Aussel, H. • Ilbert, O. • Scoville, N. • Surace, J. A. • Frayer, D. T. • Sheth, K. • Helou, G. • Brooke, T. • Bhattacharya, B. • Yan, L. • Kartaltepe, J. S. • Barnes, J. E. • Blain, A. W. • Calzetti, D. • Capak, P. • Carilli, C. • Carollo, C. M. • Comastri, A. • Daddi, E. • Ellis, R. S. • Elvis, M. • Fall, S. M. • Franceschini, A. • Giavalisco, M. • Hasinger, G. • Impey, C. • Koekemoer, A. • Le Fèvre, O. • Lilly, S. • Liu, M. C. • McCracken, H. J. • Mobasher, B. • Renzini, A. • Rich, M. • Schinnerer, E. • Shopbell, P. L. • Taniguchi, Y. • Thompson, D. J. • Urry, C. M. • Williams, J. P.

Abstract • The COSMOS Spitzer survey (S-COSMOS) is a Legacy program (Cycles 2+3) designed to carry out a uniform deep survey of the full 2 deg2 COSMOS field in all seven Spitzer bands (3.6, 4.5, 5.6, 8.0, 24.0, 70.0, and 160.0 μm). This paper describes the survey parameters, mapping strategy, data reduction procedures, achieved sensitivities to date, and the complete data set for future reference. We show that the observed infrared backgrounds in the S-COSMOS field are within 10% of the predicted background levels. The fluctuations in the background at 24 μm have been measured and do not show any significant contribution from cirrus, as expected. In addition, we report on the number of asteroid detections in the low Galactic latitude COSMOS field. We use the Cycle 2 S-COSMOS data to determine preliminary number counts, and compare our results with those from previous Spitzer Legacy surveys (e.g., SWIRE, GOODS). The results from this ``first analysis'' confirm that the S-COSMOS survey will have sufficient sensitivity with IRAC to detect ~L* disks and spheroids out to z>~3, and with MIPS to detect ultraluminous starbursts and AGNs out to z~3 at 24 μm and out to z~1.5-2 at 70 and 160 μm.

Based on observations with the NASA/ESA Hubble Space Telescope obtained at the Space Telescope Science Institute, which is operated by the Association of Universities for Research in Astronomy (AURA), Inc., under NASA contract NAS 5-26555 also based on data collected at the Subaru Telescope, which is operated by the National Astronomical Observatory of Japan; the XMM-Newton, an ESA science mission with instruments and contributions directly funded by ESA Member States and NASA; the European Southern Observatory under Large Program 175.A-0839, Chile; Kitt Peak National Observatory, Cerro Tololo Inter-American Observatory, and the National Optical Astronomy Observatory, which are operated by AURA under cooperative agreement with the National Science Foundation; the National Radio Astronomy Observatory, which is a facility of the National Science Foundation operated under cooperative agreement by Associated Universities, Inc.; and the Canada-France-Hawaii Telescope (CFHT) with MegaPrime/MegaCam operated as a joint project by the CFHT Corporation, CEA/DAPNIA, the National Research Council of Canada, the Canadian Astronomy Data Centre, the Centre National de la Recherche Scientifique de France, TERAPIX, and the University of Hawaii.

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IPAC Authors
(alphabetical)

George Helou

IPAC Executive Director