Low Angular Momentum in Clumpy, Turbulent Disk Galaxies
arXiv:1508.04768 · doi:10.1088/0004-637X/815/2/97
Abstract
We measure the stellar specific angular momentum jstar=Jstar/Mstar in four nearby (z~0.1) disk galaxies that have stellar masses Mstar near the break M* of the galaxy mass function, but look like typical star-forming disks at z~2 in terms of their low stability (Q~1), clumpiness, high ionized gas dispersion (40-50 km/s), high molecular gas fraction (20-30%) and rapid star formation (~20 Msun/yr). Combining high-resolution (Keck-OSIRIS) and large-radius (Gemini-GMOS) spectroscopic maps, only available at low z, we discover that these targets have about three times less stellar angular momentum than typical local spiral galaxies of equal stellar mass and bulge fraction. Theoretical considerations show that this deficiency in angular momentum is the main cause of their low stability, while the high gas fraction plays a complementary role. Interestingly, the low jstar values of our targets are similar to those expected in the M*-population at higher z from the approximate theoretical scaling jstar~(1+z)^(-1/2) at fixed Mstar. This suggests that a change in angular momentum, driven by cosmic expansion, is the main cause for the remarkable difference between clumpy M*-disks at high z (which likely evolve into early-type galaxies) and mass-matched local spirals.
4 Figures (including one interactive 3D figure), 1 Table
References in corpus (10)
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- From rings to bulges: evidence for rapid secular galaxy evolution at z~2 from integral field spectroscopy in the SINS survey
- Rapid formation of exponential disks and bulges at high redshift from the dynamical evolution of clump cluster and chain galaxies
- Evidence for Mature Bulges and an Inside-out Quenching Phase 3 Billion Years After the Big Bang
- Connecting Angular Momentum and Galactic Dynamics: The complex Interplay between Spin, Mass, and Morphology
- Galactic Angular Momentum in the Illustris Simulation: Feedback and the Hubble Sequence
- The Cosmic Decline in the H2/HI-Ratio in Galaxies
- Hyper-Fit: Fitting Linear Models to Multidimensional Data with Multivariate Gaussian Uncertainties
- Extreme gas fractions in clumpy, turbulent disk galaxies at z~0.1
Cited by in corpus (35)
- The Evolution and Origin of Ionized Gas Velocity Dispersion from to with KMOS
- The KMOS Deep Survey (KDS) I: dynamical measurements of typical star-forming galaxies at z 3.5
- The KMOS Redshift One Spectroscopic Survey (KROSS): the origin of disk turbulence in z~0.9 star-forming galaxies
- DYNAMO-HST Survey: Clumps in Nearby Massive Turbulent Disks and the Effects of Clump Clustering on Kiloparsec Scale Measurements of Clumps
- Kinematics of Simulated Galaxies I: Connecting Dynamical and Morphological Properties of Early-Type Galaxies at Different Redshifts
- Angular Momentum Regulates Atomic Gas Fractions of Galactic Disks
- The EDGE-CALIFA survey: the influence of galactic rotation on the molecular depletion time across the Hubble sequence
- Systematic difference between ionized and molecular gas velocity dispersion in disks and local analogues
- From massive spirals to dwarf irregulars: a new set of tight scaling relations for cold gas and stars driven by disc gravitational instability
- The evolution of turbulent galactic discs: gravitational instability, feedback and accretion
- The Morphology-Density-Relation: Impact on the Satellite Fraction
- Testing Feedback Regulated Star Formation in Gas Rich, Turbulent Disk Galaxies
- Angular momentum and local gravitational instability in galaxy discs: does correlate with or ?
- The angular momentum of disc galaxies at z=1
- Revisiting the stellar mass -- angular momentum -- morphology relation: extension to higher bulge fraction, and the effect of bulge type
- Massive quiescent galaxies at : a comparison of selection, stellar population and structural properties with simulation predictions
- The connection between the peaks in velocity dispersion and star-forming clumps of turbulent galaxies
- ZFIRE: 3D Modeling of Rotation, Dispersion, and Angular Momentum of Star-Forming Galaxies at z~2
- The Dynamics and Distribution of Angular Momentum in HiZELS Star-Forming Galaxies at z = 0.8 - 3.3
- From Peculiar Morphologies to Hubble-type Spirals: The relation between galaxy dynamics and morphology in star-forming galaxies at z~1.5
- Angular momentum of galaxies and their local analogues with adaptive optics
- The MUSE Hubble Ultra Deep Field Survey XVI. The angular momentum of low-mass star-forming galaxies. A cautionary tale and insights from TNG50
- Stellar Masses of Clumps in Gas-rich, Turbulent Disk Galaxies
- Angular momentum evolution of stellar disks at high redshifts
- Unveiling the role of galactic rotation on star formation
- Dynamic equilibrium sets atomic content of galaxies across cosmic time
- Stellar angular momentum distribution linked to galaxy morphology
- ΛCDM with baryons vs. MOND: the time evolution of the universal acceleration scale in the Magneticum simulations
- Multiresolution angular momentum measurements of z~1.5-2 star-forming galaxies
- The evolution of galaxy scaling relations in clusters at 0.5<z<1.5
- CO Excitation in High-z Main Sequence Analogues: Resolved CO(4-3)/CO(3-2) Line Ratios in DYNAMO Galaxies
- Spin transfer from dark matter to gas during halo formation
- A Shallow Slope for the Stellar Mass--Angular Momentum Relation of Star-Forming Galaxies at
- Radial Transport in High-Redshift Disk Galaxies Dominated by Inflowing Streams
- Size-scaling of clump instabilities in turbulent, feedback regulated disks