4.7 Article

THE SPITZER DEEP, WIDE-FIELD SURVEY

Journal

ASTROPHYSICAL JOURNAL
Volume 701, Issue 1, Pages 428-453

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/0004-637X/701/1/428

Keywords

infrared: galaxies; infrared: stars; surveys

Funding

  1. National Aeronautics and Space Administration (NASA)
  2. NASA [1314516, NCC5-626]
  3. NASA's Earth Science Technology Office
  4. California Institute of Technology
  5. W.M. Keck Foundation
  6. Science and Technology Facilities Council [PP/E001181/1] Funding Source: researchfish

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The Spitzer Deep, Wide-Field Survey (SDWFS) is a four-epoch infrared survey of 10 deg(2) in the Bootes field of the NOAO Deep Wide-Field Survey using the IRAC instrument on the Spitzer Space Telescope. SDWFS, a Spitzer Cycle 4 Legacy project, occupies a unique position in the area-depth survey space defined by other Spitzer surveys. The four epochs that make up SDWFS permit-for the first time-the selection of infrared-variable and high proper motion objects over a wide field on timescales of years. Because of its large survey volume, SDWFS is sensitive to galaxies out to z similar to 3 with relatively little impact from cosmic variance for all but the richest systems. The SDWFS data sets will thus be especially useful for characterizing galaxy evolution beyond z similar to 1.5. This paper explains the SDWFS observing strategy and data processing, presents the SDWFS mosaics and source catalogs, and discusses some early scientific findings. The publicly released, full-depth catalogs contain 6.78, 5.23, 1.20, and 0.96 x 10(5) distinct sources detected to the average 5 sigma, 4 ''-diameter, aperture-corrected limits of 19.77, 18.83, 16.50, and 15.82 Vega mag at 3.6, 4.5, 5.8, and 8.0 mu m, respectively. The SDWFS number counts and color-color distribution are consistent with other, earlier Spitzer surveys. At the 6 minute integration time of the SDWFS IRAC imaging, > 50% of isolated Faint Images of the Radio Sky at Twenty cm radio sources and > 80% of on-axis XBootes sources are detected out to 8.0 mu m. Finally, we present the four highest proper motion IRAC-selected sources identified from the multi-epoch imaging, two of which are likely field brown dwarfs of mid-T spectral class.

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