The angular momentum of disc galaxies: implications for gas accretion, outflows, and dynamical friction
arXiv:1108.0663 · doi:10.1111/j.1365-2966.2011.20339.x
Abstract
We combine constraints on the galaxy-dark matter connection with structural and dynamical scaling relations to investigate the angular momentum content of disc galaxies. For haloes with masses in the interval 10^{11.3} < M_vir/M_sun < 10^{12.7} we find that the galaxy spin parameters are independent of halo mass with <λ'_gal> = (J_gal/M_gal) / (\sqrt{2} R_vir V_vir) = 0.019^{+0.004}_{-0.003} (1sigma). This is significantly lower than for relaxed LCDM haloes, which have an average spin parameter <λ'_halo> = 0.031. The average ratio between the specific angular momentum of disk galaxies and their host dark matter haloes is therefore R_j = λ'_gal/λ'_halo = 0.61^{+0.13}_{-0.10}. This calls into question a standard assumption made in the majority of all (semi-analytical) models for (disc) galaxy formation, namely that R_j=1. Using simple disc formation models we show that it is particularly challenging to understand why R_j is independent of halo mass, while the galaxy formation efficiency (ε_GF, proportional to the ratio of galaxy mass to halo mass) reveals a strong halo mass dependence. We argue that the empirical scaling relations between ε_GF, R_j and halo mass require both feedback (i.e., galactic outflows) and angular momentum transfer from the baryons to the dark matter (i.e., dynamical friction). The efficiency of angular momentum loss need to decrease with increasing halo mass. Such a mass dependence may reflect a bias against forming stable discs in high mass, low spin haloes or a transition from cold-mode accretion in low mass haloes to hot-mode accretion at the massive end. However, current hydrodynamical simulations of galaxy formation, which should include these processes, seem unable to reproduce the empirical relation between ε_GF and R_j. We conclude that the angular momentum build-up of galactic discs remains poorly understood.
15 pages, 11 figures, accepted to MNRAS
References in corpus (17)
- 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
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- The Milky Way's Circular Velocity Curve to 60 kpc and an Estimate of the Dark Matter Halo Mass from Kinematics of ~2400 SDSS Blue Horizontal Branch Stars
- Concentration, Spin and Shape of Dark Matter Haloes as a Function of the Cosmological Model: WMAP1, WMAP3 and WMAP5 results
- The RAVE Survey: Constraining the Local Galactic Escape Speed
- The spin and shape of dark matter haloes in the Millennium simulation of a LambdaCDM universe
- Galaxy Groups in the SDSS DR4: II. halo occupation statistics
- A Revised Model for the Formation of Disk Galaxies: Low Spin and Dark-Halo Expansion
- Hierarchical formation of bulgeless galaxies: Why outflows have low angular momentum
- The Redshift Evolution of LCDM Halo Parameters: Concentration, Spin, and Shape
- Feedback and the Structure of Simulated Galaxies at redshift z=2
- The Impact of Feedback on Disk Galaxy Scaling Relations
- Weakening dark-matter cusps by clumpy baryonic infall
- On the Origin of Exponential Galaxy Disks
- Empirical distributions of galactic spin parameters from the SDSS
- The role of spin in the formation and evolution of galaxies
- The Origin of Extended Disk Galaxies at z=2
Cited by in corpus (27)
- Angular momentum and galaxy formation revisited
- Where stars form: inside-out growth and coherent star formation from HST Halpha maps of 2676 galaxies across the main sequence at z~1
- Halo and Subhalo Demographics with Planck Cosmological Parameters: Bolshoi-Planck and MultiDark-Planck Simulations
- Is the dark-matter halo spin a predictor of galaxy spin and size?
- The impact of stellar feedback on the structure, size and morphology of galaxies in Milky Way size dark matter haloes
- Semi-analytic forecasts for JWST -- II. physical properties and scaling relations for galaxies at z = 4-10
- Robust HI kinematics of gas-rich ultra-diffuse galaxies: hints of a weak-feedback formation scenario
- The specific angular momentum of disc galaxies and its connection with galaxy morphology, bar structure and disc gravitational instability
- From massive spirals to dwarf irregulars: a new set of tight scaling relations for cold gas and stars driven by disc gravitational instability
- The Structure of the Circumgalactic Medium of Galaxies: Cool Accretion Inflow Around NGC 1097
- Origin and evolution of ultra-diffuse galaxies in different environments
- Galactic angular momentum in the IllustrisTNG simulation -- I. Connection to morphology, halo spin, and black hole mass
- Rotation curves and scaling relations of extremely massive spiral galaxies
- Predictably Missing Satellites: Subhalo Abundance in Milky Way-like Halos
- The response of dark matter haloes to elliptical galaxy formation: a new test for quenching scenarios
- The KMOS Galaxy Evolution Survey (KGES): the angular momentum of star-forming galaxies over the last ~10 Gyr
- Angular Momentum of Early and Late Type Galaxies: Nature or Nurture?
- The influence of angular momentum and environment on the HI gas of late-type galaxies
- Dark-ages Reionization and Galaxy Formation Simulation -- XVII. Sizes, angular momenta and morphologies of high redshift galaxies
- Angular momentum evolution of stellar disks at high redshifts
- Stellar angular momentum distribution linked to galaxy morphology
- The Effect of the Angular Momentum in the Formation and Evolution of Low Surface Brightness Galaxies
- The influence of galaxy surface brightness on the mass-metallicity relation
- No Evolution in the Half-mass Radius of Milky Way-type Galaxies over the Last 10 Gyr
- The Circular Velocity Function of Group Galaxies
- A Shallow Slope for the Stellar Mass--Angular Momentum Relation of Star-Forming Galaxies at
- The Influence of Subhaloes on Host Halo Properties