The angular momentum -- mass relation of local disc galaxies
arXiv:2503.07715 · doi:10.1051/0004-6361/202453290
Abstract
We present an analysis of the molecular specific angular momentum-mass () relation using a sample of 51 nearby disc galaxies from the PHANGS-ALMA survey with deep, high-resolution molecular gas rotation curves and surface density profiles. For the very first time, using a statistical sample, we report the discovery of a well-defined relation. We quantify the scaling law by fitting a power-law with a Bayesian framework, finding . This slope closely resembles the well-known stellar - (Fall) relation, highlighting the dynamical connection between molecular gas and stars. We show that the relation cannot be fully explained by analytic models of disc stability but instead is well recovered with more complex physics as implemented in the Shark semi-analytical model. These findings demonstrate the power of our novel relation in testing galaxy evolution theories and setting new constraints for models and simulations which aim to reproduce a realistic interstellar medium. Additionally, our findings provide a critical benchmark for upcoming high-redshift studies of molecular gas kinematics, offering a local baseline to study the evolution of cold gas dynamics across cosmic time.
11 pages, 6 figures, 4 tables. A&A in press, final version
References in corpus (24)
- High-Resolution Rotation Curves and Galaxy Mass Models from THINGS
- A dynamically cold disk galaxy in the early Universe
- The SAMI Galaxy Survey: the link between angular momentum and optical morphology
- Angular momentum evolution of galaxies in EAGLE
- PHANGS CO kinematics: disk orientations and rotation curves at 150 pc resolution
- New Constraints on the CO(2-1)/(1-0) Line Ratio Across Nearby Disc Galaxies
- Building disc structure and galaxy properties through angular momentum: The DARK SAGE semi-analytic model
- Detailed HI kinematics of Tully-Fisher calibrator galaxies
- MIGHTEE-HI: The baryonic Tully-Fisher relation over the last billion years
- A tight angular-momentum plane for disc galaxies
- The SAMI Galaxy Survey: A Range in S0 Properties Indicating Multiple Formation Pathways
- The SLUGGS survey: Using extended stellar kinematics to disentangle the formation histories of low mass S0 galaxies
- The ALMA-ALPAKA survey II. Evolution of turbulence in galaxy disks across cosmic time: difference between cold and warm gas
- The angular momentum of disc galaxies at z=1
- BUDHIES IV: Deep 21-cm neutral Hydrogen, optical and UV imaging data of Abell 963 and Abell 2192 at z 0.2
- The influence of angular momentum and environment on the HI gas of late-type galaxies
- Angular Momentum Content in Gas Rich Dwarf Galaxies
- Angular Momentum across the Hubble sequence from the CALIFA survey
- Angular momentum of galaxies and their local analogues with adaptive optics
- The relation between specific baryon angular momentum and mass for a sample of nearby low-mass galaxies with resolved HI kinematics
- xGASS: The connection between angular momentum, mass and atomic gas fraction in nearby galaxies
- HI angular momentum mass relation
- Stellar angular momentum distribution linked to galaxy morphology
- Stellar angular momentum of disk galaxies at z = 0.7 in the MAGIC survey I. Impact of the environment