A lower fragmentation mass scale in high redshift galaxies and its implications on giant clumps: a systematic numerical study
arXiv:1412.3319 · doi:10.1093/mnras/stv1695
Abstract
We study the effect of sub-grid physics, galaxy mass, structural parameters and resolution on the fragmentation of gas-rich galaxy discs into massive star forming clumps. The initial conditions are set up with the aid of the ARGO cosmological hydrodynamical simulation. Blast-wave feedback does not suppress fragmentation, but reduces both the number of clumps and the duration of the unstable phase. Once formed, bound clumps cannot be destroyed by our feedback model. Widespread fragmentation is promoted by high gas fractions and low halo concentrations. Yet giant clumps lasting several hundred Myr are rare and mainly produced by clump-clump mergers. They occur in massive discs with maximum rotational velocities km/s at , at the high mass end of the observed galaxy population at those redshifts. The typical gaseous and stellar masses of clumps in all runs are in the range for galaxies with disc mass in the range . Clumps sizes are usually in the range pc, in agreement with recent clump observations in lensed high-z galaxies. \\ We argue that many of the giant clumps identified in observations are not due to in-situ fragmetation, or are the result of blending of smaller structures owing to insufficient resolution. Using an analytical model describing local collapse inside spiral arms, we can predict the characteristic gaseous masses of clumps at the onset of fragmentation () quite accurately, while the conventional Toomre mass overestimates them. Due to their moderate masses, clumps which migrate to the centre have marginal effect on bulge growth.
27 pages, 25 figures and two tables. Accepted by MNRAS
References in corpus (24)
- Star Formation in AEGIS Field Galaxies since z=1.1 : The Dominance of Gradually Declining Star Formation, and the Main Sequence of Star-Forming Galaxies
- The Herschel view of the dominant mode of galaxy growth from z=4 to the present day
- Star Formation and Feedback in Smoothed Particle Hydrodynamic Simulations--I. Isolated Galaxies
- Smoothed Particle Hydrodynamics and Magnetohydrodynamics
- From rings to bulges: evidence for rapid secular galaxy evolution at z~2 from integral field spectroscopy in the SINS survey
- The KMOS^3D Survey: design, first results, and the evolution of galaxy kinematics from 0.7<z<2.7
- Compaction and Quenching of High-z Galaxies in Cosmological Simulations: Blue and Red Nuggets
- Wet Disc Contraction to Galactic Blue Nuggets and Quenching to Red Nuggets
- The rapid formation a large rotating disk galaxy three billion years after the Big Bang
- The Mass-Concentration-Redshift Relation of Cold Dark Matter Halos
- Kinemetry of SINS High-Redshift Star-Forming Galaxies: Distinguishing Rotating Disks from Major Mergers
- A Superbubble Feedback Model for Galaxy Simulations
- Fragmentation of gravitationally unstable gaseous protoplanetary disks with radiative transfer
- Resolved spectroscopy of gravitationally lensed galaxies: global dynamics and star-forming clumps on ~100pc scales
- The Population of Giant Clumps in Simulated High-z Galaxies: In-situ and Ex-situ, Migration and Survival
- Numerical requirements for simulations of self gravitating and non-self gravitating disks
- The Argo Simulation: I. Quenching of Massive Galaxies at High Redshift as a Result of Cosmological Starvation
- Early formation of massive, compact, spheroidal galaxies with classical profiles by violent disc instability or mergers
- Molecular gas content in strongly-lensed z~1.5-3 star-forming galaxies with low IR luminosities
- Orbital Decay of Supermassive Black Hole Binaries in Clumpy Multiphase Merger Remnants
- The Argo Simulation: II. The Early Build-up of the Hubble Sequence
- Star Formation and Clumps in Cosmological Galaxy Simulations with Radiation Pressure Feedback
- The Formation of Fragments at Corotation in Isothermal Protoplanetary Disks
- A magnified view of star formation at redshift 0.9 from two lensed galaxies
Cited by in corpus (75)
- High-redshift star formation in the ALMA era
- Kiloparsec-scale gaseous clumps and star formation at
- Giant Clumps in Simulated High-z Galaxies: Properties, Evolution and Dependence on Feedback
- Giant clumps in the FIRE simulations: a case study of a massive high-redshift galaxy
- Star formation at the smallest scales; A JWST study of the clump populations in SMACS0723
- The nature of giant clumps in distant galaxies probed by the anatomy of the Cosmic Snake
- Clumpy Galaxies in CANDELS. II. Physical Properties of UV-bright Clumps at
- The imprint of clump formation at high redshift. I. A disc alpha-abundance dichotomy
- A unified model for the maximum mass-scales of molecular clouds, stellar clusters, and high-redshift clumps
- DYNAMO-HST Survey: Clumps in Nearby Massive Turbulent Disks and the Effects of Clump Clustering on Kiloparsec Scale Measurements of Clumps
- Molecular clouds in the Cosmic Snake normal star-forming galaxy 8 billion years ago
- ALMA 200-parsec Resolution Imaging of Smooth Cold Dusty Disks in Typical Star-Forming Galaxies
- Convergence of the critical cooling rate for protoplanetary disk fragmentation achieved; the key role of numerical dissipation of angular momentum
- A contribution of star-forming clumps and accreting satellites to the mass assembly of z ~ 2 galaxies
- NIHAO XIII: Clumpy discs or clumpy light in high redshift galaxies?
- On the stellar masses of giant clumps in distant star-forming galaxies
- Exploring the physical properties of lensed star-forming clumps at
- Supermassive black hole pairs in clumpy galaxies at high redshift: delayed binary formation and concurrent mass growth
- Circumplanetary disks around young giant planets: a comparison between core-accretion and disk instability
- Clusters of Small Clumps Can Explain The Peculiar Properties of Giant Clumps in High-Redshift Galaxies
- Physical Properties of Sub-galactic Clumps at 0.5 1.5 in the UVUDF
- Connecting Clump Sizes in Turbulent Disk Galaxies to Instability Theory
- Stellar Masses of Giant Clumps in CANDELS and Simulated Galaxies Using Machine Learning
- In-situ extreme mass ratio inspirals via sub-parsec formation and migration of stars in thin, gravitationally unstable AGN discs
- Clumpy galaxies seen in H-alpha: inflated observed clump properties due to limited spatial resolution and sensitivity
- First constraints on the stellar mass function of star-forming clumps at the peak of cosmic star formation
- The VIMOS Ultra-Deep Survey: A major merger origin for the high fraction of galaxies at with two bright clump
- Young and turbulent: the early life of massive galaxy progenitors
- Star-forming Clumps in Local Luminous Infrared Galaxies
- On the Dynamics of Supermassive Black Holes in Gas-Rich, Star-Forming Galaxies: the Case for Nuclear Star Cluster Coevolution
- Star-forming clumps in the Lyman Alpha Reference Sample of galaxies -- I. Photometric analysis and clumpiness
- 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
- Spiral-arm instability: giant clump formation via fragmentation of a galactic spiral arm
- The influence of infall on the properties of protoplanetary discs
- Clump Survival and Migration in VDI Galaxies: an Analytic Model versus Simulations and Observations
- RELICS: Small-scale Star Formation in Lensed Galaxies at
- Planck's dusty GEMS. V. Molecular wind and clump stability in a strongly lensed star-forming galaxy at z=2.2
- Molecular gas cloud properties at revealed by the superb angular resolution achieved with ALMA and gravitational lensing
- Multiply lensed star forming clumps in the A521-sys1 galaxy at redshift 1
- Growth of Supermassive Black Hole Seeds in ETG Star-Forming Progenitors: Multiple Merging of Stellar Compact Remnants via Gaseous Dynamical Friction and Gravitational Wave Emission
- Origin of Giant Stellar Clumps in High-Redshift Galaxies
- Formation of N-rich field stars in the high-density building blocks of the Galactic bulge
- The imprint of clump formation at high redshift. II. The chemistry of the bulge
- Early galaxy growth: mergers or gravitational instability?
- Structure and stability of high-redshift galaxies in cosmological simulations
- Hierarchical fragmentation in high redshift galaxies revealed by hydrodynamical simulations
- The nature of giant clumps in high-z discs: a deep-learning comparison of simulations and observations
- Clumpy galaxies in cosmological simulations: The effect of ISM model
- PANORAMIC: Discovery of an Ultra-Massive Grand-Design Spiral Galaxy at
- Near-IR clumps and their properties in high-z galaxies with JWST/NIRCam
- From giant clumps to clouds IV: extreme star-forming clumps on top of universal cloud scaling relations in gas-rich galaxies
- Clumps as multiscale structures in cosmic noon galaxies
- Multiple regimes and coalescence timescales for massive black hole pairs ; the critical role of galaxy formation physics
- Simulations of globular clusters within their parent galaxies: Metallicity spreads and anomalous precursor populations
- Multiscale mass transport in z~6 galactic discs: fueling black holes
- Star-forming galaxies at low-redshift in the SHARDS survey
- Generation of gravitational waves and tidal disruptions in clumpy galaxies
- Physics of a clumpy lensed galaxy at z=1.6
- Stellar feedback in a clumpy galaxy at 3.4
- Characterizing fragmentation and sub-Jovian clump properties in magnetized young protoplanetary disks
- Dark matter cores in massive high- galaxies formed by baryonic clumps
- Towards Studying Hierarchical Assembly in Real Time: A Milky Way Progenitor Galaxy at z = 2.36 under the Microscope
- A Tale of Two Clump Masses: A New Way to Study Clump Formation in Simulations
- The KMOS Lens-Amplified Spectroscopic Survey (KLASS): Kinematics and clumpiness of low-mass galaxies at cosmic noon
- Astrophysics with the Laser Interferometer Space Antenna
- Black hole-galaxy co-evolution and the role of feedback
- Unveiling the gravitationally unstable disc of a massive star-forming galaxy using NOEMA and MUSE
- DIPSY: A new Disc Instability Population SYnthesis, I. Modeling, evolution of individual systems, and tests
- The Environment of Lyman Break Analogues (ELBA) survey: Star-forming galaxies in small groups
- K-Band Imaging of the Nearby, Clumpy Turbulent Disk Galaxy DYNAMO G04-1
- Collisions of young disc galaxies in the early universe
- Cosmic wallflowers: the circumgalactic origins of isolated ultra-compact star clusters at
- Compact [OIII] emission-line regions ("Green Seeds") in emitters at Cosmic Noon from JWST Observations
- Dust and gas modelling in radiative transfer simulations of disc-dominated galaxies with RADMC-3D