4.7 Article

Galaxy group at z=0.3 associated with the damped Lyman α system towards quasar Q1127-145

期刊

出版社

OXFORD UNIV PRESS
DOI: 10.1111/j.1365-2966.2010.16667.x

关键词

galaxies: haloes; galaxies: interactions; galaxies: ISM; quasars: absorption lines

资金

  1. Australian Research Council [DP0877998]
  2. National Science Foundation [AST-0708210]
  3. Australian Research Council [DP0877998] Funding Source: Australian Research Council

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We performed a spectroscopic galaxy survey, complete to m(F814W) < 20.3 (L-B > 0.15L star(B) at z = 0.3), within 100 x 100 arcsec2 of the quasar Q1127-145 (z(em) = 1.18). The Very Large Telescope/Ultraviolet and Visual Echelle Spectrograph (UVES) quasar spectrum contains three z(abs) < 0.33 Mg ii absorption systems. We obtained eight new galaxy redshifts, adding to the four previously known, and galaxy star formation rates (SFRs) and metallicities were computed where possible. A strong Mg ii system [W-r(2796) = 1.8 A], which is a known damped Lyman alpha absorber (DLA), had three previously identified galaxies; we found two additional galaxies associated with this system. These five galaxies form a group with diverse properties, such as a luminosity range of 0.04 < L-B < 0.63 L star(B), an impact parameter range of 17 < D < 241 kpc and a velocity dispersion of Sigma = 115 km s-1. The DLA group galaxy redshifts span beyond the 350 km s-1 velocity spread of the metallic absorption lines of the DLA itself. The two brightest group galaxies have SFRs of similar to few M-circle dot yr-1 and should not have strong winds. We have sufficient spectroscopic information to directly compare three of the five group galaxies' (emission-line) metallicities with the DLA (absorption) metallicity: the DLA metallicity is one-tenth solar, substantially lower than the three galaxies' metallicity which ranges between less than 1/2 solar to solar. Hubble Space Telescope (HST)/Wide Field Planetary Camera 2 (WFPC-2) imaging shows perturbed morphologies for the three brightest group galaxies, with tidal tails extending similar to 25 kpc. We favour a scenario where the DLA absorption originates from tidal debris in the group environment. Another absorber exhibits weak Mg ii absorption [W-r(2796) = 0.03 A] and had a previously identified galaxy at a similar redshift. We have identified a second galaxy associated with this system. Both galaxies have solar metallicities and unperturbed morphologies in the HST/WFPC-2 image. The SFR of one galaxy is much lower than that expected for strong outflows. Finally, we have also identified five galaxies at large impact parameters with no associated Mg ii absorption [W-r(2796) less than or similar to 5.7 mA, 3 Sigma] in the spectrum of Q1127-145.

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