TL;DR
This study uses cosmological simulations combined with SIGAME to model [CII], [OI], and [OIII] emissions from star-forming galaxies at z~6, explaining their faint [CII] emission and matching some observed properties.
Contribution
First to combine cosmological zoom simulations with SIGAME for modeling multiple line emissions in high-redshift galaxies, explaining [CII] faintness.
Findings
Simulations reproduce [CII]-faintness at z>5.
Match two of three z>5 [OIII] detections.
[CII] correlates with star formation and metallicity.
Abstract
Of the almost 40 star forming galaxies at z>~5 (not counting QSOs) observed in [CII] to date, nearly half are either very faint in [CII], or not detected at all, and fall well below expectations based on locally derived relations between star formation rate (SFR) and [CII] luminosity. Combining cosmological zoom simulations of galaxies with SIGAME (SImulator of GAlaxy Millimeter/submillimeter Emission) we have modeled the multi-phased interstellar medium (ISM) and its emission in [CII], [OI] and [OIII], from 30 main sequence galaxies at z~6 with star formation rates ~3-23Msun/yr, stellar masses ~(0.7-8)x10^9Msun, and metallicities ~(0.1-0.4)xZsun. The simulations are able to reproduce the aforementioned [CII]-faintness at z>5, match two of the three existing z>~5 detections of [OIII], and are furthermore roughly consistent with the [OI] and [OIII] luminosity relations with SFR observed…
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