4.7 Article

THE zCOSMOS-SINFONI PROJECT. I. SAMPLE SELECTION AND NATURAL-SEEING OBSERVATIONS

期刊

ASTROPHYSICAL JOURNAL
卷 743, 期 1, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/0004-637X/743/1/86

关键词

galaxies: evolution; galaxies: high-redshift; galaxies: kinematics and dynamics; infrared: galaxies

资金

  1. MPG
  2. European Commission [PIOF-GA-2009-236012]
  3. ASI-INAF [I/009/10/0]
  4. ASI
  5. INAF
  6. STFC [ST/I001204/1] Funding Source: UKRI
  7. Science and Technology Facilities Council [ST/I001204/1] Funding Source: researchfish

向作者/读者索取更多资源

The zCOSMOS-SINFONI project is aimed at studying the physical and kinematical properties of a sample of massive z similar to 1.4-2.5 star-forming galaxies, through SINFONI near-infrared integral field spectroscopy (IFS), combined with the multiwavelength information from the zCOSMOS (COSMOS) survey. The project is based on one hour of natural-seeing observations per target, and adaptive optics (AO) follow-up for a major part of the sample, which includes 30 galaxies selected from the zCOSMOS/VIMOS spectroscopic survey. This first paper presents the sample selection, and the global physical characterization of the target galaxies from multicolor photometry, i.e., star formation rate (SFR), stellar mass, age, etc. The Ha integrated properties, such as, flux, velocity dispersion, and size, are derived from the natural-seeing observations, while the follow-up AO observations will be presented in the next paper of this series. Our sample appears to be well representative of star-forming galaxies at z similar to 2, covering a wide range in mass and SFR. The Ha integrated properties of the 25 Ha detected galaxies are similar to those of other IFS samples at the same redshifts. Good agreement is found among the SFRs derived from Ha luminosity and other diagnostic methods, provided the extinction affecting the Ha luminosity is about twice that affecting the continuum. A preliminary kinematic analysis, based on the maximum observed velocity difference across the source and on the integrated velocity dispersion, indicates that the sample splits nearly 50-50 into rotation-dominated and velocity-dispersion-dominated galaxies, in good agreement with previous surveys.

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