The Formation of Massive, Compact Galaxies at z=2 in the Illustris Simulation
arXiv:1411.0667 · doi:10.1093/mnras/stv303
Abstract
Massive, quiescent galaxies at high redshift have been found to be considerably more compact than galaxies of similar mass in the local universe. How these compact galaxies formed has yet to be determined, though several progenitor populations have been proposed. Here we investigate the formation processes and quantify the assembly histories of such galaxies in Illustris, a suite of hydrodynamical cosmological simulations encompassing a sufficiently large volume to include rare objects, while simultaneously resolving the internal structure of galaxies. We select massive (~10^11 solar masses) and compact (stellar half-mass radius < 2 kpc) galaxies from the simulation at z=2. Within the Illustris suite, we find that these quantities are not perfectly converged, but are reasonably reliable for our purposes. The resulting population is composed primarily of quiescent galaxies, but we also find several star-forming compact galaxies. The simulated compact galaxies are similar to observed galaxies in star formation activity and appearance. We follow their evolution at high redshift in the simulation and find that there are multiple pathways to form these compact galaxies, dominated by two mechanisms: (i) intense, centrally concentrated starbursts generally triggered by gas-rich major mergers between z~2-4, reducing the galaxies' half-mass radii by a factor of a few to below 2 kpc, and (ii) assembly at very early times when the universe was much denser; the galaxies formed compact and remained so until z~2.
13 pages, 10 figures, MNRAS accepted version
References in corpus (26)
- 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
- The hierarchical formation of the brightest cluster galaxies
- 3D-HST+CANDELS: The Evolution of the Galaxy Size-Mass Distribution since
- Properties of galaxies reproduced by a hydrodynamic simulation
- Introducing the Illustris Project: the evolution of galaxy populations across cosmic time
- 3D-HST WFC3-selected Photometric Catalogs in the Five CANDELS/3D-HST Fields: Photometry, Photometric Redshifts and Stellar Masses
- A unified model for AGN feedback in cosmological simulations of structure formation
- The Illustris simulation: the evolving population of black holes across cosmic time
- Structure and star formation in galaxies out to z=3: evidence for surface density dependent evolution and upsizing
- Size evolution of the most massive galaxies at 1.7<z<3 from GOODS NICMOS survey imaging
- Moving mesh cosmology: tracing cosmological gas accretion
- Sunrise: Polychromatic Dust Radiative Transfer in Arbitrary Geometries
- Dissipation and Extra Light in Galactic Nuclei: II. 'Cusp' Ellipticals
- The dramatic size evolution of elliptical galaxies and the quasar feedback
- Dissipation and Extra Light in Galactic Nuclei: I. Gas-Rich Merger Remnants
- Stellar populations from spectroscopy of a large sample of quiescent galaxies at z > 1: Measuring the contribution of progenitor bias to early size growth
- Dissipation and Extra Light in Galactic Nuclei: III. 'Core' Ellipticals and 'Missing' Light
- Dense cores in galaxies out to z=2.5 in SDSS, UltraVISTA, and the five 3D-HST/CANDELS fields
- Synthetic Galaxy Images and Spectra from the Illustris Simulation
- The Argo Simulation: I. Quenching of Massive Galaxies at High Redshift as a Result of Cosmological Starvation
- Rapidly growing black holes and host galaxies in the distant Universe from the Herschel Radio Galaxy Evolution Project
- A Massive Galaxy in its Core Formation Phase Three Billion Years After the Big Bang
- Morphological evolution of galaxies from ultradeep HST WFC3 imaging: the Hubble sequence at z~2
- Diverse Structural Evolution at z > 1 in Cosmologically Simulated Galaxies
- Star Formation and Clumps in Cosmological Galaxy Simulations with Radiation Pressure Feedback
Cited by in corpus (50)
- Compaction and Quenching of High-z Galaxies in Cosmological Simulations: Blue and Red Nuggets
- The Size Evolution of Star-forming and Quenched Galaxies in the IllustrisTNG simulation
- Galactic Angular Momentum in the Illustris Simulation: Feedback and the Hubble Sequence
- The role of mergers and halo spin in shaping galaxy morphology
- Morphology and star formation in IllustrisTNG: the build-up of spheroids and discs
- Sub-kpc ALMA imaging of compact star-forming galaxies at z~2.5: revealing the formation of dense galactic cores in the progenitors of compact quiescent galaxies
- Predicting Quiescence: The Dependence of Specific Star Formation Rate on Galaxy Size and Central Density at 0.5<z<2.5
- MOSFIRE Spectroscopy of Quiescent Galaxies at 1.5 < z < 2.5. I - Evolution of Structural and Dynamical Properties
- Timing the formation and assembly of early-type galaxies via spatially resolved stellar populations analysis
- Cosmology and Convention
- CANDELS: Elevated Black Hole Growth in the Progenitors of Compact Quiescent Galaxies at z~2
- Two new confirmed massive relic galaxies: red nuggets in the present-day Universe
- Massive quenched galaxies at z~0.7 retain large molecular gas reservoirs
- Diverse Structural Evolution at z > 1 in Cosmologically Simulated Galaxies
- An ALMA survey of submillimetre galaxies in the COSMOS field: Physical properties derived from energy balance spectral energy distribution modelling
- ALMA measures rapidly depleted molecular gas reservoirs in massive quiescent galaxies at z~1.5
- Spatially resolved kinematics in the central 1 kpc of a compact star-forming galaxy at z=2.3 from ALMA CO observations
- CLEAR II: Evidence for Early Formation of the Most Compact Quiescent Galaxies at High Redshift
- The mass, colour, and structural evolution of today's massive galaxies since z~5
- Low Gas Fractions Connect Compact Star-Forming Galaxies to their z ~ 2 Quiescent Descendants
- Exploring AGN and Star Formation Activity of Massive Galaxies at Cosmic Noon
- The Rapid Build-up of Massive Early-type Galaxies. Supersolar Metallicity, High Velocity Dispersion and Young Age for an ETG at z=3.35
- Galaxy Sizes Since from the Perspective of Stellar Mass Distribution within Galaxies
- Clumpy and Extended Starbursts in the Brightest Unlensed Submillimeter Galaxies
- The Morphology-Density relationship in 1<z<2 clusters
- Radio continuum size evolution of star-forming galaxies over 0.35 < z < 2.25
- The fate of the Antennae galaxies
- The role of the most luminous, obscured AGN in galaxy assembly at z~2
- Early-type galaxy density profiles from IllustrisTNG: II. Evolutionary trend of the total density profile
- Gravitational Potential and Surface Density Drive Stellar Populations -- II. Star-Forming Galaxies
- Compact, bulge dominated structures of spectroscopically confirmed quiescent galaxies at z~3
- Recent Star-formation in a Massive Slowly-Quenched Lensed Quiescent Galaxy at z=1.88
- From starburst to quiescence: post-starburst galaxies and their large-scale clustering over cosmic time
- Early Science with the Large Millimeter Telescope: Constraining the Gas Fraction of a Compact Quiescent Galaxy at z=1.883
- An improved probabilistic approach for linking progenitor and descendant galaxy populations using comoving number density
- Star formation quenching imprinted on the internal structure of naked red nuggets
- The stellar mass - size relation for cluster galaxies at z=1 with high angular resolution from the Gemini/GeMS multi-conjugate adaptive optics system
- Low-mass compact elliptical galaxies: spatially-resolved stellar populations and kinematics with the Keck Cosmic Web Imager
- Evidence for Reduced Specific Star Formation Rates in the Centers of Massive Galaxies at z = 4
- Relic galaxy analogues in Illustris TNG50: the formation pathways of surviving red nuggets in a cosmological simulation
- Two channels for the formation of compact dwarf galaxies in clusters of galaxies
- Physical properties of compact star-forming galaxies at
- Stellar Kinematics and Environment at z~0.8 in the LEGA-C Survey: Massive, Slow-Rotators are Built First in Overdense Environments
- Globular Cluster Systems of Relic Galaxies
- Compact Galaxies at Intermediate Redshifts Quench Faster than Normal-sized Galaxies
- The effect of the morphological quenching mechanism on star formation activity at 0.5 < z < 1.5 in 3D-HST/CANDELS
- LARgE Survey. I. Dead Monsters: the Massive End of the Passive Galaxy Stellar Mass Function at Cosmic Noon
- MOSEL and IllustrisTNG: Massive Extended Galaxies at z=2 Quench Later Than Normal-size Galaxies
- A massive quiescent galaxy confirmed in a protocluster at z=3.09
- SDSS J122958.84+000138.0: A Compact, Optically red galaxy