Building disc structure and galaxy properties through angular momentum: The DARK SAGE semi-analytic model
arXiv:1605.00647 · doi:10.1093/mnras/stw1332
Abstract
We present the new semi-analytic model of galaxy evolution, DARK SAGE, a heavily modified version of the publicly available SAGE code. The model is designed for detailed evolution of galactic discs. We evolve discs in a series of annuli with fixed specific angular momentum, which allows us to make predictions for the radial and angular-momentum structure of galaxies. Most physical processes, including all channels of star formation and associated feedback, are performed in these annuli. We present the surface density profiles of our model spiral galaxies, both as a function of radius and specific angular momentum, and find the discs naturally build a pseduobulge-like component. Our main results are focussed on predictions relating to the integrated mass--specific angular momentum relation of stellar discs. The model produces a distinct sequence between these properties in remarkable agreement with recent observational literature. We investigate the impact Toomre disc instabilities have on shaping this sequence and find they are crucial for regulating both the mass and spin of discs. Without instabilities, high-mass discs would be systematically deficient in specific angular momentum by a factor of ~2.5, with increased scatter. Instabilities also appear to drive the direction in which the mass--spin sequence of spiral galaxy discs evolves. With them, we find galaxies of fixed mass have higher specific angular momentum at later epochs.
Published in MNRAS, 19 pages, 20 figures (both including appendices)
References in corpus (22)
- Cosmic Star Formation History
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Overview of the SDSS-IV MaNGA Survey: Mapping Nearby Galaxies at Apache Point Observatory
- The hierarchical formation of the brightest cluster galaxies
- Properties of galaxies reproduced by a hydrodynamic simulation
- The Role of Pressure in GMC Formation II: The H_2 - Pressure Relation
- Baryon effects on the internal structure of LCDM halos in the EAGLE simulations
- The Structure of Classical Bulges And Pseudobulges: The Link Between Pseudobulges And Sersic Index
- What is Driving the HI Velocity Dispersion?
- A mass-dependent density profile for dark matter haloes including the influence of galaxy formation
- Galactic Angular Momentum in the Illustris Simulation: Feedback and the Hubble Sequence
- On the galaxy stellar mass function, the mass-metallicity relation, and the implied baryonic mass function
- The SAGES Legacy Unifying Globulars and GalaxieS Survey (SLUGGS): Sample definition, methods, and initial results
- The Atomic to Molecular Transition and its Relation to the Scaling Properties of Galaxy Disks in the Local Universe
- The Impact of Feedback on Disk Galaxy Scaling Relations
- A First Attempt to Calibrate the Baryonic Tully-Fisher Relation with Gas Dominated Galaxies
- Understanding the H2/HI Ratio in Galaxies
- Dark Sky Simulations: Early Data Release
- Ram pressure stripping in a galaxy formation model. I. A novel numerical approach
- The origin of the atomic and molecular gas contents of early-type galaxies. II. Misaligned gas accretion
- On the Correlation between Spin Parameter and Halo Mass
- Black hole spin and radio loudness in a LCDM universe
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- The KMOS Redshift One Spectroscopic Survey (KROSS): rotational velocities and angular momentum of z~0.9 galaxies
- MultiDark-Galaxies: data release and first results
- The origin of dust in galaxies across cosmic time
- How to get cool in the heat: comparing analytic models of hot, cold, and cooling gas in haloes and galaxies with EAGLE
- Physical drivers of galaxies' cold-gas content: exploring environmental and evolutionary effects with DARK SAGE
- Galactic angular momentum in the IllustrisTNG simulation -- I. Connection to morphology, halo spin, and black hole mass
- A New Method to Quantify Environment and Model Ram-Pressure Stripping in N-Body Simulations
- The Origin of Exponential Star-forming Disks
- The SAMI Galaxy Survey: Physical drivers of stellar-gas kinematic misalignments in the nearby Universe
- Kiloparsec-scale AGN Outflows and Feedback in Merger-Free Galaxies
- Dark-ages reionization and galaxy formation simulation--VII. The sizes of high-redshift galaxies
- The influence of angular momentum and environment on the HI gas of late-type galaxies
- The HIX galaxy survey I: Study of the most gas rich galaxies from HIPASS
- WALLABY Pilot Survey: Public release of HI kinematic models for more than 100 galaxies from phase 1 of ASKAP pilot observations
- Dark-ages Reionization and Galaxy Formation Simulation -- XVII. Sizes, angular momenta and morphologies of high redshift galaxies
- New Analytic Solutions for Galaxy Evolution II: Wind Recycling, Galactic Fountains and Late-Type Galaxies
- SHDE: Survey description and mass-kinematics scaling relations for dwarf galaxies
- The Evolution of Sizes and Specific Angular Momenta in Hierarchical Models of Galaxy Formation and Evolution
- HI HOD -- I. The Halo Occupation Distribution of HI Galaxies
- Deficit of Luminous and Normal Red Galaxies in Cosmic Voids
- Measurements of the angular momentum-mass relations in the Simba simulation
- Shape noise and dispersion in precision weak lensing
- Galaxy assembly bias and large-scale distribution: a comparison between IllustrisTNG and a semi-analytic model
- Predicting halo occupation and galaxy assembly bias with machine learning
- How well is angular momentum accretion modelled in semi-analytic galaxy formation models?