Galaxy sizes and the galaxy-halo connection -- I: the remarkable tightness of the size distributions
arXiv:1912.02831 · doi:10.1093/mnras/stz3516
Abstract
The mass and structural assembly of galaxies is a matter of intense debate. Current theoretical models predict the existence of a linear relationship between galaxy size () and the host dark matter halo virial radius ().\\ By making use of semi-empirical models compared to the size distributions of central galaxies from the Sloan Digital Sky Survey, we provide robust constraints on the normalization and scatter of the relation. We explore the parameter space of models in which the relation is mediated by either the spin parameter or the concentration of the host halo, or a simple constant the nature of which is in principle unknown. We find that the data require extremely tight relations for both early-type and late-type galaxies (ETGs,LTGs), especially for more massive galaxies. These constraints challenge models based solely on angular momentum conservation, which predict significantly wider distributions of galaxy sizes and no trend with stellar mass, if taken at face value. We discuss physically-motivated alterations to the original models that bring the predictions into better agreement with the data. We argue that the measured tight size distributions of SDSS disk galaxies can be reproduced by semi-empirical models in which the connection is mediated by the \emph{stellar} specific angular momenta We find that current cosmological models of galaxy formation broadly agree with our constraints for LTGs, and justify the strong link between and that we propose, however the tightness of the relation found in such ab-initio theoretical models for ETGs is in tension with our semi-empirical findings.
22 pages, 14 figures
References in corpus (31)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- 3D-HST+CANDELS: The Evolution of the Galaxy Size-Mass Distribution since
- Simulating galaxy formation with black hole driven thermal and kinetic feedback
- Introducing the Illustris Project: the evolution of galaxy populations across cosmic time
- Galaxy Groups in the SDSS DR4: I. The Catalogue and Basic Properties
- SPARC: Mass Models for 175 Disk Galaxies with Spitzer Photometry and Accurate Rotation Curves
- Compaction and Quenching of High-z Galaxies in Cosmological Simulations: Blue and Red Nuggets
- Four phases of angular-momentum buildup in high-z galaxies: from cosmic-web streams through an extended ring to disc and bulge
- SKIRT: an Advanced Dust Radiative Transfer Code with a User-Friendly Architecture
- The Size Evolution of Star-forming and Quenched Galaxies in the IllustrisTNG simulation
- The dramatic size evolution of elliptical galaxies and the quasar feedback
- A catalogue of 2D photometric decompositions in the SDSS-DR7 spectroscopic main galaxy sample: preferred models and systematics
- The pseudo-evolution of halo mass
- The Blast Wave Model for AGN Feedback: Effects on AGN Obscuration
- The origin of scatter in the stellar mass - halo mass relation of central galaxies in the EAGLE simulation
- Deep learning predictions of galaxy merger stage and the importance of observational realism
- The stellar-to-halo mass relations of local galaxies segregates by color
- Elemental Abundances in Milky Way-like Galaxies from a Hierarchical Galaxy Formation Model
- A statistical investigation of the mass discrepancy-acceleration relation
- Physical properties underlying observed kinematics of satellite galaxies
- Galaxies in the Illustris simulation as seen by the Sloan Digital Sky Survey - II: Size-luminosity relations and the deficit of bulge-dominated galaxies in Illustris at low mass
- Triggering Active Galactic Nuclei in Hierarchical Galaxy Formation: Disk instability vs. Interactions
- Relations Between the Sizes of Galaxies and their Dark Matter Halos at Redshifts
- Galaxies in the Illustris simulation as seen by the Sloan Digital Sky Survey - I: Bulge+disc decompositions, methods, and biases
- A New View of the Size-Mass Distribution of Galaxies: Using and instead of
- The Role of Dissipation in the Scaling Relations of Cosmological Merger Remnants
- The angular momentum of disc galaxies at z=1
- Comparing PyMorph and SDSS photometry. I. Background sky and model fitting effects
- Angular Momentum of Early and Late Type Galaxies: Nature or Nurture?
- The Evolution of Sizes and Specific Angular Momenta in Hierarchical Models of Galaxy Formation and Evolution
Cited by in corpus (32)
- A physically motivated definition for the size of galaxies in an era of ultra-deep imaging
- Hyper Suprime-Cam Subaru Strategic Program: A Mass-Dependent Slope of the Galaxy Size-Mass Relation at
- Probing Dark Low-mass Halos and Primordial Black Holes with Frequency-dependent Gravitational Lensing Dispersions of Gravitational Waves
- The abundance of satellites around Milky Way- and M31-like galaxies with the TNG50 simulation: a matter of diversity
- The relationship between fine galaxy stellar morphology and star formation activity in cosmological simulations: a deep learning view
- The baryonic specific angular momentum of disc galaxies
- From lenticulars to blue compact dwarfs: the stellar mass fraction is regulated by disc gravitational instability
- Deep Realistic Extragalactic Model (DREaM) Galaxy Catalogs: Predictions for a Roman Ultra-Deep Field
- The galaxy size - halo mass scaling relations and clustering properties of central and satellite galaxies
- The galaxy size to halo spin relation of disk galaxies in cosmological hydrodynamical simulations
- Towards robust determination of non-parametric morphologies in marginal astronomical data: resolving uncertainties with cosmological hydrodynamical simulations
- The galaxy-halo size relation of low-mass galaxies in FIRE
- The galaxy mass-size relation in CARLA clusters and proto-clusters at 1.4 < z < 2.8: larger cluster galaxy sizes
- Inferring galaxy dark halo properties from visible matter with Machine Learning
- New Analytic Solutions for Galaxy Evolution II: Wind Recycling, Galactic Fountains and Late-Type Galaxies
- The evolution of compact massive quiescent and starforming galaxies derived from the and relations
- The evolutionary pathways of disk galaxies with different sizes
- Family dispute: do Type IIP supernova siblings agree on their distance?
- The Physical Origin of the Mass-Size Relation and Its Scatter of Disk Galaxies
- The impact of turbulent mixing on the galactic r-process enrichment by binary neutron star mergers
- The weak dependence of velocity dispersion on disk fractions, mass-to-light ratio and redshift: Implications for galaxy and black hole evolution
- Modelling Dark Matter Halo Spin using Observations and Simulations: application to UGC 5288
- Outflows in the Gaseous Discs of Active Galaxies and their impact on Black Hole Scaling Relations
- The relationship between galaxy and halo sizes in the Illustris and IllustrisTNG simulations
- Probing galaxy evolution from to through galaxy scaling relations in three L-Galaxies flavours
- Using angular momentum maps to detect kinematically distinct galactic components
- Galaxy-halo size relation from Sloan Digital Sky Survey Data Release 7 and the ELUCID simulation
- Why do semi-analytic models predict higher scatter in the stellar mass-halo mass relation than cosmological hydrodynamic simulations?
- The size function of massive satellites from the and relations: constraining the role of environment
- Shedding light on the star formation rate-halo accretion rate connection and halo quenching mechanism via DECODE, the Discrete statistical sEmi-empiriCal mODEl
- Two-phase formation of galaxies: the coevolution between galaxies and dark matter halos
- Testing the key role of the stellar mass-halo mass relation in galaxy merger rates and morphologies via DECODE, a novel Discrete statistical sEmi-empiriCal mODEl