4.6 Article

Discovering extremely compact and metal-poor, star-forming dwarf galaxies out to z ∼ 0.9 in the AMOS Ultra-Deep Survey

期刊

ASTRONOMY & ASTROPHYSICS
卷 568, 期 -, 页码 -

出版社

EDP SCIENCES S A
DOI: 10.1051/0004-6361/201423816

关键词

galaxies: evolution; galaxies: high-redshift; galaxies: starburst; galaxies: abundances; galaxies: dwarf; galaxies: fundamental parameters

资金

  1. European Research Council [ERC-2010-AdG-268107-EARLY]
  2. INAL
  3. FP7 SPACE project ASTRODEEP [312725]
  4. European Commission
  5. MIUR
  6. Grants-in-Aid for Scientific Research [23244031] Funding Source: KAKEN

向作者/读者索取更多资源

We report the discovery of 31 low-luminosity (-14.5 g >= M-AB(B) >= -18.8), extreme emission line galaxies (EELGs) at 0.2 <= z <= 0.9 identified by their unusually high rest frame equivalent widths (100 <= EW[O III] <= 1700 angstrom) as part of the VIMOS Ultra Deep Survey (VUDS), VIMOS optical spectra of unprecedented sensdivity (I-AB similar to 25 mag) along with multiwavelength photometry and HST imaging are used to investigate spectrophotometric properties of this unique sample and to explore, for the first time, the very low stellar mass end (M-* <= 10(8) M-circle dot) of the luminosity-metallicity (LZR) and mass-metallicity (MZR) relations at z < 1, Characterized by their extreme compactness (R-50 < 1 kpc). low stellar mass and enhanced specific star formation rates (sSFR = SFR/M-* similar to 10(-9)-10(-7) yr(-1)). the VUDS EELGs are blue dwarf galaxies likely experiencing the first stages of a vigorous galaxy-wide starburst Using T-c-sensitive direct and strong-line methods, we find that VUDS KELGs are low-metallicity (7.5 <= 12 + log (O/H) <= 8.3) galaxies with high ionization conditions (log (q(ion)) >= 8 cm s(-1)). including at least three EELGs showing HeII lambda 4686 angstrom emission and four extremely metal-poor (<= 10% solar) galaxies, The LZR and MZR followed by VUDS EELGs show relatively large scatter, being broadly consistent with the extrapolation toward low luminosity and mass from previous studies at similar redshift, However, we find evidence that galaxies with younger and more vigorous star formation as characterized by their larger LA's, ionization and sSFR - tend to be more metal poor at a given stellar mass.

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