NOEMA3D: Resolving radial gas flows in disk galaxies at z~1.1-1.6 with high-resolution CO observations
Jean-Baptiste Jolly, Linda J. Tacconi, Reinhard Genzel, Roberto Neri, Karl Schuster, Jianhang Chen, Natascha M. F\"orster Schreiber, Stavros Pastras, Letizia Scaloni, Giulia Tozzi, Capucine Barf\'ety, Alberto Bolatto, Andreas Burker, Fran\c{c}oise Combes, Pierre Cox, Ric Davies

TL;DR
NOEMA3D provides high-resolution observations of molecular gas kinematics in galaxies at z~1.1-1.6, revealing ordered rotation, significant non-circular motions, and efficient gas inflows linked to galaxy morphology during peak star formation epoch.
Contribution
This study offers the first detailed view of cold gas dynamics at high redshift, linking non-axisymmetric structures to radial gas flows in massive disk galaxies.
Findings
Galaxies exhibit ordered rotation with moderate turbulence.
Non-circular motions reach 50-100 km/s, associated with spiral arms and bars.
Molecular gas inflow rates are comparable to star formation rates (~50 M_sun/yr).
Abstract
We present NOEMA3D, a unique high-resolution study of purely molecular gas kinematics at to 1.6, providing a dedicated view of cold gas dynamics at the late stages of the peak epoch of cosmic star formation. Using deep ( hr on source per target) IRAM-NOEMA CO observations of 10 massive ()) main-sequence galaxies, complemented by high-resolution JWST imaging, we resolve the molecular gas kinematics and morphology on kiloparsec scales. We find that all galaxies exhibit ordered rotation with moderate intrinsic turbulence (median km/s, median ), consistent with dynamically turbulent disks at late cosmic noon. After modeling the axisymmetric rotation with the forward-modeling code DysmalPy, we reveal spatially coherent velocity residuals in all but one more inclined system. The…
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