4.7 Article

THE SINS/zC-SINF SURVEY of z ∼ 2 GALAXY KINEMATICS: OUTFLOW PROPERTIES

Journal

ASTROPHYSICAL JOURNAL
Volume 761, Issue 1, Pages -

Publisher

IOP Publishing Ltd
DOI: 10.1088/0004-637X/761/1/43

Keywords

cosmology: observations; galaxies: evolution; galaxies: high-redshift; infrared: galaxies

Funding

  1. NSF
  2. ASI
  3. INAF

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Using SINFONI H alpha, [N II], and [S II] AO data of 27 z similar to 2 star-forming galaxies (SFGs) from the SINS and zC-SINF surveys, we explore the dependence of outflow strength (via the broad flux fraction) on various galaxy parameters. For galaxies that have evidence for strong outflows, we find that the broad emission is spatially extended to at least the half-light radius (similar to a few kpc). Decomposition of the [S II] doublet into broad and narrow components suggests that this outflowing gas probably has a density of similar to 10-100 cm(-3), less than that of the star-forming gas (600 cm-3). There is a strong correlation of the Ha broad flux fraction with the star formation surface density of the galaxy, with an apparent threshold for strong outflows occurring at 1 M-circle dot yr(-1) kpc(-2). Above this threshold, we find that SFGs with log m(*) > 10 have similar or perhaps greater wind mass-loading factors (eta = (M) over dot(out)/SFR) and faster outflow velocities than lower mass SFGs, suggesting that the majority of outflowing gas at z similar to 2 may derive from high-mass SFGs. The mass-loading factor is also correlated with the star formation rate (SFR), galaxy size, and inclination, such that smaller, more star-forming, and face-on galaxies launch more powerful outflows. We propose that the observed threshold for strong outflows and the observed mass loading of these winds can be explained by a simple model wherein break-out of winds is governed by pressure balance in the disk.

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