The AURORA Survey: High-Redshift Empirical Metallicity Calibrations from Electron Temperature Measurements at z=2-10
Ryan L. Sanders, Alice E. Shapley, Michael W. Topping, Naveen A. Reddy, Danielle A. Berg, Ali Ahmad Khostovan, Rychard J. Bouwens, Gabriel Brammer, Adam C. Carnall, Fergus Cullen, Romeel Dav\'e, James S. Dunlop, Richard S. Ellis, N. M. F\"orster Schreiber, Steven R. Furlanetto

TL;DR
This study provides new empirical calibrations for determining gas-phase metallicities in high-redshift galaxies using electron temperature measurements, covering a wide metallicity range and improving accuracy over previous methods.
Contribution
It introduces robust high-redshift metallicity calibrations based on auroral line detections, addressing limitations of nitrogen-based ratios and aligning with local galaxy analogs.
Findings
Calibrations based on alpha element lines are reliable.
Significant scatter in nitrogen-based line ratios due to N/O dispersion.
New calibrations better match extreme local galaxy samples.
Abstract
We present detections of auroral emission lines of [OIII], [OII], [SIII], and [SII] in deep JWST/NIRSpec spectroscopy for 41 star-forming galaxies at from the AURORA survey. We combine these new observations with 98 star-forming galaxies at with detected auroral lines drawn from the literature to form a sample of 139 high-redshift galaxies with robust electron temperature and direct-method oxygen abundance determinations. This sample notably covers a wider dynamic range in metallicity than previous work, spanning ~Z. We calibrate empirical relations between 19 emission-line ratios and oxygen abundance, providing a robust tool set to infer accurate gas-phase metallicities of high-redshift galaxies when auroral lines are not detected. While calibrations based on lines of elements (O, Ne, S, Ar) appear reliable, we find significant…
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