The ALPINE-ALMA [CII] Survey: Investigation of 10 Galaxies at $z\sim4.5$ with [OII] and [CII] Line Emission $-$ ISM Properties and [OII]$-$SFR Relation
Brittany N. Vanderhoof, A. L. Faisst, L. Shen, B. C. Lemaux, M., B\'ethermin, P. L. Capak, P. Cassata, O. Le F\`evre, D. Schaerer, J., Silverman, L. Yan, M. Boquien, R. Gal, J. Kartaltepe, L. M. Lubin, M., Dessauges-Zavadsky, Y. Fudamoto, M. Ginolfi, N. P. Hathi, G. C. Jones

TL;DR
This study analyzes 10 galaxies at redshift 4.5 using multi-wavelength data to explore their interstellar medium properties and the relation between [OII] emission and star formation, revealing evolution in ISM characteristics over cosmic time.
Contribution
It provides the first detailed analysis of [OII] and [CII] line ratios and their relation to star formation in galaxies at z~4.5, highlighting ISM evolution since reionization.
Findings
[OII]-SFR relation at z~4.5 is metal-dependent.
ISM properties at z~4.5 are similar to those at z~2.
Evidence of evolution in ISM properties since z>6.
Abstract
We present main-sequence ALPINE galaxies (log() = 9.2-11.1 and ) at with optical [OII] measurements from Keck/MOSFIRE spectroscopy and Subaru/MOIRCS narrow-band imaging. This is the largest such multi-wavelength sample at these redshifts, combining various measurements in the ultra-violet, optical, and far-infrared including [CII] line emission and dust continuum from ALMA and H emission from Spitzer photometry. For the first time, this unique sample allows us to analyze the relation between [OII] and total star-formation rate (SFR) and the interstellar medium (ISM) properties via [OII]/[CII] and [OII]/\halpha luminosity ratios at . The [OII]SFR relation at cannot be described using standard local descriptions, but is consistent with a metal-dependent relation…
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