SIMBAD references

2014ApJ...791...17M - Astrophys. J., 791, 17 (2014/August-2)

The nature of extreme emission line galaxies at z = 1-2: kinematics and metallicities from near-infrared spectroscopy.

MASEDA M.V., VAN DER WEL A., RIX H.-W., DA CUNHA E., PACIFICI C., MOMCHEVA I., BRAMMER G.B., MEIDT S.E., FRANX M., VAN DOKKUM P., FUMAGALLI M., BELL E.F., FERGUSON H.C., FORSTER-SCHREIBER N.M., KOEKEMOER A.M., KOO D.C., LUNDGREN B.F., MARCHESINI D., NELSON E.J., PATEL S.G., SKELTON R.E., STRAUGHN A.N., TRUMP J.R. and WHITAKER K.E.

Abstract (from CDS):

We present near-infrared spectroscopy of a sample of 22 Extreme Emission Line Galaxies at redshifts 1.3 < z < 2.3, confirming that these are low-mass (M{sstarf}= 108-109 M) galaxies undergoing intense starburst episodes (M{sstarf}/SFR ∼ 10-100 Myr). The sample is selected by [O III] or Hα emission line flux and equivalent width using near-infrared grism spectroscopy from the 3D-HST survey. High-resolution NIR spectroscopy is obtained with LBT/LUCI and VLT/X-SHOOTER. The [O III]/Hβ line ratio is high ( ≳ 5) and [N II]/Hα is always significantly below unity, which suggests a low gas-phase metallicity. We are able to determine gas-phase metallicities for seven of our objects using various strong-line methods, with values in the range 0.05-0.30 Z and with a median of 0.15 Z; for three of these objects we detect [O III] λ4363, which allows for a direct constraint on the metallicity. The velocity dispersion, as measured from the nebular emission lines, is typically ∼50 km/s. Combined with the observed star-forming activity, the Jeans and Toomre stability criteria imply that the gas fraction must be large (fgas ≳ 2/3), consistent with the difference between our dynamical and stellar mass estimates. The implied gas depletion timescale (several hundred Myr) is substantially longer than the inferred mass-weighted ages (∼50 Myr), which further supports the emerging picture that most stars in low-mass galaxies form in short, intense bursts of star formation.

Abstract Copyright:

Journal keyword(s): galaxies: dwarf - galaxies: evolution - galaxies: formation - galaxies: high-redshift - galaxies: starburst

Simbad objects: 41

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