The MOSDEF Survey: Excitation Properties of $z\sim 2.3$ Star-forming Galaxies
Alice E. Shapley, Naveen A. Reddy, Mariska Kriek, William R. Freeman,, Ryan L. Sanders, Brian Siana, Alison L. Coil, Bahram Mobasher, Irene Shivaei,, Sedona H. Price, Laura de Groot

TL;DR
This study uses the MOSDEF survey to analyze the excitation properties of z~2.3 star-forming galaxies, revealing a mass-dependent offset in emission-line diagnostics and proposing robust metallicity indicators for high-redshift galaxies.
Contribution
It provides the first comprehensive analysis of excitation properties of z~2.3 galaxies across multiple diagnostic diagrams, highlighting the impact of N/O ratios and introducing reliable metallicity indicators.
Findings
High-redshift galaxies show a mass-dependent offset in BPT diagrams.
The offset is linked to elevated N/O ratios in low-mass galaxies.
O_32 and R_23 can serve as unbiased metallicity indicators across redshifts.
Abstract
We present results on the excitation properties of z~2.3 galaxies using early observations from the MOSFIRE Deep Evolution Field (MOSDEF) Survey. With its coverage of the full suite of strong rest-frame optical emission lines, MOSDEF provides an unprecedented view of the rest-frame optical spectra of a representative sample of distant star-forming galaxies. We investigate the locations of z~2.3 MOSDEF galaxies in multiple emission-line diagnostic diagrams. These include the [OIII]/Hb vs. [NII]/Ha and [OIII]/Hb vs. [SII]/Ha "BPT" diagrams, as well as the O_32 vs. R_23 excitation diagram. We recover the well-known offset in the star-forming sequence of high-redshift galaxies in the [OIII]/Hb vs. [NII]/Ha BPT diagram relative to SDSS star-forming galaxies. However, the shift for our rest-frame optically selected sample is less significant than for rest-frame-UV selected and emission-line…
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