The Kinematics and Dark Matter Fractions of TNG50 Galaxies at z=2 from an Observational Perspective
Hannah \"Ubler, Shy Genel, Amiel Sternberg, Reinhard Genzel, Sedona H., Price, Natascha M. F\"orster Schreiber, Taro T. Shimizu, Annalisa Pillepich,, Dylan Nelson, Andreas Burkert, Ric Davies, Lars Hernquist, Philipp Lang,, Dieter Lutz, R\"udiger Pakmor, and Linda J. Tacconi

TL;DR
This study compares the gas kinematics and dark matter fractions of z=2 star-forming galaxies from the TNG50 simulation with observations, revealing similarities and discrepancies in rotation and dark matter content.
Contribution
It provides a detailed observational perspective on simulated galaxies, highlighting differences in dark matter fractions and kinematic features at high redshift.
Findings
Simulated galaxies show disc rotation with asymmetric curves.
Velocity profiles vary significantly with line of sight.
Dark matter fractions are broadly consistent but tend to be overestimated at certain radii.
Abstract
We contrast the gas kinematics and dark matter contents of star-forming galaxies (SFGs) from state-of-the-art cosmological simulations within the CDM framework to observations. To this end, we create realistic mock observations of massive SFGs (, SFR yr) from the TNG50 simulation of the IllustrisTNG suite, resembling near-infrared, adaptive-optics assisted integral-field observations from the ground. Using observational line fitting and modeling techniques, we analyse in detail the kinematics of seven TNG50 galaxies from five different projections per galaxy, and compare them to observations of twelve massive SFGs by Genzel et al. (2020). The simulated galaxies show clear signs of disc rotation but mostly exhibit more asymmetric rotation curves, partly due to large intrinsic radial and vertical velocity components. At…
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