A Massive Galaxy in its Core Formation Phase Three Billion Years After the Big Bang
arXiv:1406.3350 · doi:10.1038/nature13616
Abstract
Most massive galaxies are thought to have formed their dense stellar cores at early cosmic epochs. However, cores in their formation phase have not yet been observed. Previous studies have found galaxies with high gas velocity dispersions or small apparent sizes but so far no objects have been identified with both the stellar structure and the gas dynamics of a forming core. Here we present a candidate core in formation 11 billion years ago, at z=2.3. GOODS-N-774 has a stellar mass of 1.0x10^11 Msun, a half-light radius of 1.0 kpc, and a star formation rate of 90[+45-20]Msun/yr. The star forming gas has a velocity dispersion 317+-30 km/s, amongst the highest ever measured. It is similar to the stellar velocity dispersions of the putative descendants of GOODS-N-774, compact quiescent galaxies at z~2 and giant elliptical galaxies in the nearby Universe. Galaxies such as GOODS-N-774 appear to be rare; however, from the star formation rate and size of the galaxy we infer that many star forming cores may be heavily obscured, and could be missed in optical and near-infrared surveys.
To appear in Nature
References in corpus (8)
- 3D-HST+CANDELS: The Evolution of the Galaxy Size-Mass Distribution since
- A simple model to interpret the ultraviolet, optical and infrared emission from galaxies
- An ultra-deep near-infrared spectrum of a compact quiescent galaxy at z=2.2
- 3D-HST WFC3-selected Photometric Catalogs in the Five CANDELS/3D-HST Fields: Photometry, Photometric Redshifts and Stellar Masses
- Strong Nebular Line Ratios in the Spectra of z~2-3 Star-forming Galaxies: First Results from KBSS-MOSFIRE
- H-alpha Observations of a Large Sample of Galaxies at z~2: Implications for Star Formation in High Redshift Galaxies
- Dense cores in galaxies out to z=2.5 in SDSS, UltraVISTA, and the five 3D-HST/CANDELS fields
- Keck-I MOSFIRE spectroscopy of compact star-forming galaxies at z2: High velocity dispersions in progenitors of compact quiescent galaxies
Cited by in corpus (35)
- Compaction and Quenching of High-z Galaxies in Cosmological Simulations: Blue and Red Nuggets
- The Formation of Massive, Compact Galaxies at z=2 in the Illustris Simulation
- Star-Forming Galaxies at Cosmic Noon
- Evidence for Wide-Spread AGN Driven Outflows in the Most Massive z~1-2 Star Forming Galaxies
- Morphology and star formation in IllustrisTNG: the build-up of spheroids and discs
- The evolution of post-starburst galaxies from z=2 to z= 0.5
- Stellar populations from spectroscopy of a large sample of quiescent galaxies at z > 1: Measuring the contribution of progenitor bias to early size growth
- RUBIES: Evolved Stellar Populations with Extended Formation Histories at in Candidate Massive Galaxies Identified with JWST/NIRSpec
- Keck-I MOSFIRE spectroscopy of compact star-forming galaxies at z2: High velocity dispersions in progenitors of compact quiescent galaxies
- JWST reveals a population of ultra-red, flattened disk galaxies at 2<z<6 previously missed by HST
- CANDELS: Elevated Black Hole Growth in the Progenitors of Compact Quiescent Galaxies at z~2
- Structural evolution in massive galaxies at z~2
- Dissecting the size-mass and -mass relations at 1.0 < z < 2.5: galaxy mass profiles and color gradients as a function of spectral shape
- xGASS: HI fueling of star formation in disk-dominated galaxies
- Spectroscopic Confirmation of an Ultra Massive and Compact Galaxy at z=3.35: A Detailed Look at an Early Progenitor of Local Most Massive Ellipticals
- Low Gas Fractions Connect Compact Star-Forming Galaxies to their z ~ 2 Quiescent Descendants
- From Diversity to Dichotomy, and Quenching: Milky-Way-Like and Massive-Galaxy Progenitors at 0.5<z<3.0
- GOODS-ALMA 2.0: Starbursts in the main sequence reveal compact star formation regulating galaxy evolution prequenching
- Sub-millimetre compactness as a critical dimension to understand the Main Sequence of star-forming galaxies
- JADES + JEMS: A Detailed Look at the Buildup of Central Stellar Cores and Suppression of Star Formation in Galaxies at Redshifts 3 < z < 4.5
- One Plane for All: Massive Star-Forming and Quiescent Galaxies Lie on the Same Mass Fundamental Plane at z~0 and z~0.7
- JWST CEERS probes the role of stellar mass and morphology in obscuring galaxies
- From Nuclear to Circumgalactic: Zooming in on AGN-Driven Outflows at z~2.2 with SINFONI
- Compact, bulge dominated structures of spectroscopically confirmed quiescent galaxies at z~3
- The interstellar medium and feedback in the progenitors of the compact passive galaxies at z~2
- A controlled study of cold dust content in galaxies from
- Evidence for Reduced Specific Star Formation Rates in the Centers of Massive Galaxies at z = 4
- CANDELS Meets GSWLC: Evolution of the Relationship Between Morphology and Star Formation Since z = 2
- Fluctuation Spectroscopy: A New Probe of Old Stellar Populations
- JADES Ultra-red Flattened Objects: Morphologies and Spatial Gradients in Color and Stellar Populations
- Structures, stellar population properties, AGN fractions, and environments of massive compact galaxies at in 3D--{\it HST}/CANDELS
- MOSEL Survey: Tracking the Growth of Massive Galaxies at 2<z<4 using Kinematics and the IllustrisTNG Simulation
- Unravelling the Origin of the Counter-Rotating Core in IC 1459 with KMOS and MUSE
- Anomalously Narrow Linewidths of Compact Massive Star-Forming Galaxies at z~2.3: A Possible Inclination Bias in the Size-Mass Plane
- Linking Compact Dwarf Starburst Galaxies in the RESOLVE Survey to Downsized Blue Nuggets