The Physical Conditions of Emission-Line Galaxies at Cosmic Dawn from JWST/NIRSpec Spectroscopy in the SMACS 0723 Early Release Observations
arXiv:2207.12388 · doi:10.3847/1538-4357/acba8a
Abstract
We present rest-frame optical emission-line flux ratio measurements for five galaxies observed by the JWST Near-Infared Spectrograph (NIRSpec) in the SMACS 0723 Early Release Observations. We add several quality-control and post-processing steps to the NIRSpec pipeline reduction products in order to ensure reliable relative flux calibration of emission lines that are closely separated in wavelength, despite the uncertain \textit{absolute} spectrophotometry of the current version of the reductions. Compared to galaxies in the literature, the galaxies have similar [OIII]5008/H ratios, similar [OIII]4364/H ratios, and higher (0.5 dex) [NeIII]3870/[OII]3728 ratios. We compare the observations to MAPPINGS V photoionization models and find that the measured [NeIII]3870/[OII]3728, [OIII]4364/H, and [OIII]5008/H emission-line ratios are consistent with an interstellar medium that has very high ionization (, units of cm~s), low metallicity (), and very high pressure (, units of cm). The combination of [OIII]4364/H and [OIII](4960+5008)/H line ratios indicate very high electron temperatures of , further implying metallicities of with the application of low-redshift calibrations for ``-based'' metallicities. These observations represent a tantalizing new view of the physical conditions of the interstellar medium in galaxies at cosmic dawn.
Accepted for publication in AAS Journals. 14 pages, 6 figures, 3 tables
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