RIOJA. JWST and ALMA unveil the inhomogeneous and complex ISM structure in a star-forming galaxy at $z=6.81$
Mitsutaka Usui, Ken Mawatari, Javier \'Alvarez-M\'arquez, Takuya Hashimoto, Yuma Sugahara, Rui Marques-Chaves, Akio K. Inoue, Luis Colina, Santiago Arribas, Carmen Blanco-Prieto, Yurina Nakazato, Naoki Yoshida, Tom J. L. C. Bakx, Daniel Ceverino, Luca Costantin

TL;DR
This study uses JWST and ALMA observations to reveal a complex, inhomogeneous, and density-stratified interstellar medium in a galaxy at redshift 6.81, showing the necessity of multi-wavelength data for understanding early galaxy structures.
Contribution
It demonstrates that combining JWST and ALMA data uncovers a multi-component, inhomogeneous ISM in a high-redshift galaxy, revealing structures not detectable by JWST alone.
Findings
Discovery of a two-component ISM with distinct densities and temperatures.
Single-component models cannot explain the observed emission lines.
Highlighting the importance of multi-wavelength observations for early galaxy studies.
Abstract
We report the discovery of a complex, density-stratified interstellar medium (ISM) in the star-forming galaxy COS-2987 at , revealed by the unprecedented synergy between JWST/NIRSpec IFS and ALMA observations. These observations detect key emission lines, including \oii~~3727, 3730, \oiii~4364, \oiii~~4960, 5008, \oiii\ 88 \micron, as well as H and H. JWST spectroscopy alone indicates ISM properties that are typical for galaxies at . These include low dust extinction ( mag), moderate electron density (~cm), and low gas-phase metallicity (). However, the strong far-infrared \oiii\ 88 \micron\ emission detected by ALMA cannot be explained by a single-component ionized medium with uniform electron density and temperature. Instead, a two-component ISM model,…
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