The Hierarchical Origins of Observed Galaxy Morphology
arXiv:1305.7163 · doi:10.1093/mnras/stt941
Abstract
Galaxies grow primarily via accretion-driven star formation in discs and merger-driven growth of bulges. These processes are implicit in semi-analytical models of galaxy formation, with bulge growth in particular relating directly to the hierarchical build-up of halos and their galaxies. In this paper, we consider several implementations of two semi-analytical models. Focusing on implementations in which bulges are formed during mergers only, we examine the fractions of elliptical galaxies and both passive and star-forming disk galaxies as functions of stellar and halo mass, for central and satellite systems. This is compared to an observational cross-matched SDSS+RC3 z ~ 0 sample of galaxies with accurate visual morphological classifications and M_{stellar} > 10^10.5 M_{sol}. The models qualitatively reproduce the observed increase of elliptical fraction with stellar mass, and with halo mass for central galaxies, supporting the idea that observed ellipticals form during major mergers. However, the overall elliptical fraction produced by the models is much too high compared with the z ~ 0 data. Since the "passive" -- i.e. non-star-forming -- fractions are approximately reproduced, and since the fraction which are star-forming disc galaxies is also reproduced, the problem is that the models overproduce ellipticals at the expense of passive S0 and spiral galaxies. Bulge-growth implementations (tuned to reproduce simulations) which allow the survival of residual discs in major mergers still destroy too much of the disc. Increasing the lifetime of satellites, or allowing significant disc regrowth around merger remnants, merely increases the fraction of star-forming disc galaxies. Instead, it seems necessary to reduce the mass ratios of merging galaxies, so that most mergers produce modest bulge growth in disc-galaxy remnants instead of ellipticals. [Abridged]
latex, 20 pages, 13 figures. Accepted by Monthly Notices. Source package includes full version of Table 1 from paper (file sdssrc3_table_for_paper.tab)
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
- The hierarchical formation of the brightest cluster galaxies
- Galaxy Groups in the SDSS DR4: I. The Catalogue and Basic Properties
- Galaxy Zoo: the dependence of morphology and colour on environment
- A primer on hierarchical galaxy formation: the semi-analytical approach
- The Galaxy Mass Function up to z=4 in the GOODS-MUSIC sample: into the epoch of formation of massive galaxies
- Multiple minor mergers: formation of elliptical galaxies and constraints for the growth of spiral disks
- The impact of interactions, bars, bulges, and AGN on star formation efficiency in local massive galaxies
- The MORGANA model for the rise of galaxies and active nuclei
- The growth of dark matter halos: evidence for significant smooth accretion
- The evolution of the brightest cluster galaxies since z~1 from the ESO Distant Cluster Survey (EDisCS)
- The Dependence of Galaxy Formation on Cosmological Parameters: Can we distinguish the WMAP1 and WMAP3 Parameter Sets?
- Diffuse stellar component in galaxy clusters and the evolution of the most massive galaxies at z<~1
- Simulating Subhalos at High Redshift: Merger Rates, Counts, and Types
- Reproducing the assembly of massive galaxies within the hierarchical cosmogony
- The effect of stellar feedback and quasar winds on the AGN population
- Why are AGN found in High Mass Galaxies?
Cited by in corpus (46)
- Galaxy spin alignment in filaments and sheets: observational evidence
- Linking the spin evolution of massive black holes to galaxy kinematics
- MUSE sneaks a peek at extreme ram-pressure stripping events. II. The physical properties of the gas tail of ESO137-001
- Variations of the stellar initial mass function in the progenitors of massive early-type galaxies and in extreme starburst environments
- Understanding the Structural Scaling Relations of Early-Type Galaxies
- Environmental dependence of bulge-dominated galaxy sizes in hierarchical models of galaxy formation. Comparison with the local Universe
- Avoiding progenitor bias: The structural and mass evolution of Brightest Group and Cluster Galaxies in Hierarchical models since z~1
- Major Mergers Going Notts: Challenges for Modern Halo Finders
- The role of bars in quenching star formation from z = 3 to the present epoch. Halpha3: an Halpha imaging survey of HI selected galaxies from ALFALFA, VI
- Formation of S0 galaxies through mergers. Morphological properties: tidal relics, lenses, ovals, and other inner components
- What shapes a galaxy? - Unraveling the role of mass, environment and star formation in forming galactic structure
- Formation of S0 galaxies through mergers. Bulge-disc structural coupling resulting from major mergers
- The growth of disks and bulges during hierarchical galaxy formation. I: fast evolution vs secular processes
- Massive Galaxies are Larger in Dense Environments: Environmental Dependence of Mass-Size Relation of Early-Type Galaxies
- The new semianalytic code GalICS 2.0 - Reproducing the galaxy stellar mass function and the Tully-Fisher relation simultaneously
- From Discs to Bulges: effect of mergers on the morphology of galaxies
- Structural and Dynamical Properties of Galaxies in a Hierarchical Universe: Sizes and Specific Angular Momenta
- On the Classification of UGC1382 as a Giant Low Surface Brightness Galaxy
- The SAMI Galaxy Survey: flipping of the spin-filament alignment correlates most strongly with growth of the bulge
- Observational insights on the origin of giant low surface brightness galaxies
- Galaxy and Mass Assembly (GAMA): Demonstrating the power of WISE in the study of Galaxy Groups to
- Simulating the evolution of disc galaxies in a group environment. II. The influence of close-encounters between galaxies
- The portrait of Malin 2: a case study of a giant low surface brightness galaxy
- The growth of galactic bulges through mergers in LCDM haloes revisited. II. Morphological mix evolution
- The definition of environment and its relation to the quenching of galaxies at z=1-2 in a hierarchical Universe
- The Stripe 82 Massive Galaxy Project III: A Lack of Growth Among Massive Galaxies
- The KMOS Cluster Survey (KCS) II - The Effect of Environment on the Structural Properties of Massive Cluster Galaxies at Redshift
- Frequency of Tidal Features Correlates with Age and Internal Structure of Early-type Galaxies
- The SAMI Galaxy Survey: Using Tidal Streams and Shells to Trace the Dynamical Evolution of Massive Galaxies
- Resequencing the Hubble sequence and the quadratic (black hole mass)-(spheroid stellar mass) relation for elliptical galaxies
- On the dependence of galaxy morphologies on galaxy mergers
- The diversity of assembly histories leading to disc galaxy formation in a LambdaCDM model
- The evolution of star formation activity in galaxy groups
- The evolution of compact massive quiescent and starforming galaxies derived from the and relations
- An accurate analytic mass model for lensing galaxies
- Setting firmer constraints on the evolution of the most massive, central galaxies from their local abundances and ages
- The Dearth of Difference between Central and Satellite Galaxies III. Environmental Dependence of Mass-Size and Mass-Structure Relations
- Semi-Analytic Galaxy Formation in Massive Neutrino Cosmologies
- Impact of Galaxy Mergers on Stellar Population Profiles of Early-type Galaxies
- Stellar populations in the Carina region: The Galactic plane at l = 291
- The growth of disks and bulges during hierarchical galaxy formation. II: metallicity, stellar populations and dynamical evolution
- The Most Massive Early-type Galaxies Exhibit Tidal Features More Frequently in Lower-density Environments
- Using Machine Learning to Determine Morphologies of AGN Host Galaxies in the Hyper Suprime-Cam Wide Survey
- The GECKOS survey: Jeans anisotropic models of edge-on discs uncover the impact of dust and kinematic structures
- Automatic Machine Learning Framework to Study Morphological Parameters of AGN Host Galaxies within in the Hyper Supreme-Cam Wide Survey
- Deciphering galaxy images using machine vision -- Combining variational autoencoder and principal component analysis for feature extraction