From giant clumps to clouds IV: extreme star-forming clumps on top of universal cloud scaling relations in gas-rich galaxies
arXiv:2402.15557 · doi:10.1051/0004-6361/202449721
Abstract
The clumpy nature of gas-rich galaxies at cosmic noon raises the question of universality of the scaling relations and average properties of the star-forming structures. Using controlled simulations of disk galaxies and varying only the gas fraction, we show that the influence of the galactic environments (large-scale turbulence, tides, shear) contributes, together with the different regime of instabilities, to setting a diversity of physical conditions for the formation and evolution of gas clumps from low to high gas fractions. However, the distributions of gas clumps at all gas fractions follow similar scaling relations as Larson's, suggesting the universality of median properties. Yet, we find that the scatter around these relations significantly increases with the gas fraction, allowing for the presence of massive, large, and highly turbulent clouds in gas-rich disks in addition to a more classical population of clouds. Clumps with an excess of mass for their size are slightly denser, more centrally concentrated, and host more abundant and faster star formation. We find that the star formation activity (rate, efficiency, depletion time) correlates much more strongly with the excess of mass than with the mass itself. Our results suggest the existence of universal scaling relations for gas clumps but with redshift-dependent scatters, which calls for deeper and more complete census of the populations of star-forming clumps and young stellar clusters at cosmic noon and beyond.
A&A in press
References in corpus (51)
- Cosmic Star Formation History
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- The Herschel view of the dominant mode of galaxy growth from z=4 to the present day
- The Atomic to Molecular Transition in Galaxies. II: HI and H_2 Column Densities
- Physical properties of molecular clouds for the entire Milky Way disk
- CO excitation of normal star forming galaxies out to z=1.5 as regulated by the properties of their interstellar medium
- Clumpy Galaxies in CANDELS. I. The Definition of UV Clumps and the Fraction of Clumpy Galaxies at 0.5<z<3
- The mass function of young star clusters in spiral galaxies
- Starbursts triggered by inter-galactic tides and interstellar compressive turbulence
- VINTERGATAN I: The origins of chemically, kinematically and structurally distinct discs in a simulated Milky Way-mass galaxy
- Giant Molecular Cloud Catalogues for PHANGS-ALMA: Methods and Initial Results
- Stellar structures, molecular gas, and star formation across the PHANGS sample of nearby galaxies
- Dynamical Equilibrium in the Molecular ISM in 28 Nearby Star-Forming Galaxies
- Large scale galactic turbulence: can self-gravity drive the observed HI velocity dispersions?
- Star formation at the smallest scales; A JWST study of the clump populations in SMACS0723
- The origin of the Milky Way globular clusters
- The nature of giant clumps in distant galaxies probed by the anatomy of the Cosmic Snake
- The imprint of clump formation at high redshift. I. A disc alpha-abundance dichotomy
- Giant Molecular Clouds in M31: I - Molecular Cloud Properties
- DYNAMO-HST Survey: Clumps in Nearby Massive Turbulent Disks and the Effects of Clump Clustering on Kiloparsec Scale Measurements of Clumps
- The specific angular momentum of disc galaxies and its connection with galaxy morphology, bar structure and disc gravitational instability
- VINTERGATAN II: the history of the Milky Way told by its mergers
- Modelling CO emission from hydrodynamic simulations of nearby spirals, starbursting mergers, and high-redshift galaxies
- The impact of stellar feedback on the density and velocity structure of the interstellar medium
- An extremely young massive clump forming by gravitational collapse in a primordial galaxy
- Exploring the physical properties of lensed star-forming clumps at
- Early Results From GLASS-JWST. XII: The Morphology of Galaxies at the Epoch of Reionization
- Stellar Masses of Giant Clumps in CANDELS and Simulated Galaxies Using Machine Learning
- Characterizing gravitational instability in turbulent multi-component galactic discs
- The merger-starburst connection across cosmic times
- Extreme kinematic misalignment in IllustrisTNG galaxies: the origin, structure and internal dynamics of galaxies with a large-scale counterrotation
- A diversity of starburst-triggering mechanisms in interacting galaxies and their signatures in CO emission
- Star Cluster Mass and Age Distributions of Two Fields in M83 Based on HST/WFC3 Observations
- On the Observed Diversity of Star Formation Efficiencies in Giant Molecular Clouds
- The evolution of turbulent galactic discs: gravitational instability, feedback and accretion
- The effect of ISM turbulence on the gravitational instability of galactic discs
- From giant clumps to clouds I: the impact of gas fraction evolution on the stability of galactic discs
- Mass Functions of Giant Molecular Clouds and Young Star Clusters in Six Nearby Galaxies
- Pre-supernova feedback sets the star cluster mass function to a power law and reduces the cluster formation efficiency
- Merger induced clump formation in distant infrared luminous starburst galaxies
- From giant clumps to clouds -- III. The connection between star formation and turbulence in the ISM
- The role of gas fraction and feedback in the stability and evolution of galactic discs: implications for cosmological galaxy formation models
- Clumpy high-z galaxies as a testbed for feedback-regulated galaxy formation
- Gas Accretion Can Drive Turbulence in Galaxies
- VINTERGATAN IV: Cosmic phases of star formation in Milky Way-like galaxies
- Large-scale turbulent driving regulates star formation in high-redshift gas-rich galaxies
- Molecular gas cloud properties at revealed by the superb angular resolution achieved with ALMA and gravitational lensing
- Fraction of Clumpy Star-Forming Galaxies at in UVCANDELS: Dependence on Stellar Mass and Environment
- Multiply lensed star forming clumps in the A521-sys1 galaxy at redshift 1
- Hierarchical fragmentation in high redshift galaxies revealed by hydrodynamical simulations
- Conditions for Clump Survival in High-z Disc Galaxies
Cited by in corpus (8)
- Anatomy of a z=6 Lyman-α emitter down to parsec scales: extreme UV slopes, metal-poor regions and possibly leaking star clusters
- PANORAMIC: Discovery of an Ultra-Massive Grand-Design Spiral Galaxy at
- Reconciling extragalactic star formation efficiencies with theory: insights from PHANGS
- On the origin of compressive turbulence in protoclumps in high redshift disks
- Clump formation in ram-pressure stripped galaxies: evidence from mass function
- Clumpiness of galaxies revealed in the near-infrared with COSMOS-Web
- Low-redshift analogues of cosmic noon galaxies as laboratories for clumpy star formation
- Stellar Feedback Effects on the Mass Distribution of Clouds and Cloud Complexes