English

CLEAR: Emission Line Ratios at Cosmic High Noon

Astrophysics of Galaxies 2022-03-02 v2

Abstract

We use Hubble Space Telescope WFC3 G102 and G141 grism spectroscopy to measure rest-optical emission-line ratios of 533 galaxies at z1.5z\sim1.5 in the CANDELS Lyα\alpha Emission at Reionization (CLEAR) survey. We compare [OIII]Hβ\frac{[OIII]}{H\beta} vs. [SII](Hα+[NII])\frac{[SII]}{(H\alpha +[NII])} as an "unVO87" diagram for 461 galaxies and [OIII]Hb\frac{[OIII]}{Hb} vs. [NeIII][OII]\frac{[NeIII]}{[OII]} as an "OHNO" diagram for 91 galaxies. The unVO87 diagram does not effectively separate active galactic nuclei (AGN) and [NeV][NeV] sources from star-forming galaxies, indicating that the unVO87 properties of star-forming galaxies evolve with redshift and overlap with AGN emission-line signatures at z>1z>1. The OHNO diagram effectively separates X-ray AGN and [NeV][NeV]-emitting galaxies from the rest of the population. We find that the [OIII]Hβ\frac{[OIII]}{H\beta} line ratios are significantly anti-correlated with stellar mass and significantly correlated with log(LHβ)\log(L_{H\beta}), while [SII](Hα+[NII])\frac{[SII]}{(H\alpha +[NII])} is significantly anti-correlated with log(LHβ)\log(L_{H\beta}). Comparison with MAPPINGS~V photoionization models indicates that these trends are consistent with lower metallicity and higher ionization in low-mass and high-SFR galaxies. We do not find evidence for redshift evolution of the emission-line ratios outside of the correlations with mass and SFR.Our results suggest that the OHNO diagram of [OIII]Hb\frac{[OIII]}{Hb} vs. [NeIII][OII]\frac{[NeIII]}{[OII]} will be a useful indicator of AGN content and gas conditions in very high-redshift galaxies to be observed by the James Webb Space Telescope.

Keywords

Cite

@article{arxiv.2109.08147,
  title  = {CLEAR: Emission Line Ratios at Cosmic High Noon},
  author = {Bren E. Backhaus and Jonathan R. Trump and Nikko J. Cleri and Raymond Simons and Ivelina Momcheva and Casey Papovich and Vicente Estrada-Carpenter and Steven L. Finkelstein and Jasleen Matharu and Zhiyuan Ji and Benjamin Weiner and Mauro Giavalisco and Intae Jung},
  journal= {arXiv preprint arXiv:2109.08147},
  year   = {2022}
}

Comments

20 pages, 22 figures