English

The interstellar medium in [OIII]-selected star-forming galaxies at $z\sim3.2$

Astrophysics of Galaxies 2017-11-08 v1

Abstract

We present new results from near-infrared spectroscopy with Keck/MOSFIRE of [OIII]-selected galaxies at z3.2z\sim3.2. With our HH and KK-band spectra, we investigate the interstellar medium (ISM) conditions, such as ionization states and gas metallicities. [OIII] emitters at z3.2z\sim3.2 show a typical gas metallicity of 12+log(O/H)=8.07±0.07\mathrm{12+log(O/H) = 8.07\pm0.07} at log(M/M)9.09.2\mathrm{log(M_*/M_\odot) \sim 9.0-9.2} and 12+log(O/H)=8.31±0.04\mathrm{12+log(O/H) = 8.31\pm0.04} at log(M/M)9.710.2\mathrm{log(M_*/M_\odot) \sim 9.7-10.2} when using the empirical calibration method. We compare the [OIII] emitters at z3.2z\sim3.2 with UV-selected galaxies and Lyα\alpha emitters at the same epoch and find that the [OIII]-based selection does not appear to show any systematic bias in the selection of star-forming galaxies. Moreover, comparing with star-forming galaxies at z2z\sim2 from literature, our samples show similar ionization parameters and gas metallicities as those obtained by the previous studies using the same calibration method. We find no strong redshift evolution in the ISM conditions between z3.2z\sim3.2 and z2z\sim2. Considering that the star formation rates at a fixed stellar mass also do not significantly change between the two epochs, our results support the idea that the stellar mass is the primary quantity to describe the evolutionary stages of individual galaxies at z>2z>2.

Keywords

Cite

@article{arxiv.1709.06731,
  title  = {The interstellar medium in [OIII]-selected star-forming galaxies at $z\sim3.2$},
  author = {Tomoko L. Suzuki and Tadayuki Kodama and Masato Onodera and Rhythm Shimakawa and Masao Hayashi and Ken-ichi Tadaki and Yusei Koyama and Ichi Tanaka and David Sobral and Ian Smail and Philip N. Best and Ali A. Khostovan and Yosuke Minowa and Moegi Yamamoto},
  journal= {arXiv preprint arXiv:1709.06731},
  year   = {2017}
}

Comments

20 pages, 11 figures, Accepted for publication in ApJ