Stellar Velocity Dispersion for a Strongly-Lensed, Intermediate-Mass Quiescent Galaxy at z=2.8
arXiv:1602.00007 · doi:10.3847/0004-637X/819/1/74
Abstract
Measuring stellar velocity dispersions of quiescent galaxies beyond is observationally challenging. Such measurements require near-infrared spectra with a continuum detection of at least moderate signal-to-noise, often necessitating long integrations. In this paper, we present deep X-Shooter spectroscopy of one of only two known gravitationally-lensed massive quiescent galaxies at . This galaxy is quadruply imaged, with the brightest images magnified by a factor of . The total exposure time of our data is 9.8 hours on-source; however the magnification, and the slit placement encompassing 2 images, provides a total equivalent exposure time of 215 hours. From this deep spectrum we measure a redshift (), making this one of the highest redshift quiescent galaxies that is spectroscopically confirmed. We simultaneously fit both the spectroscopic and photometric data to determine stellar population parameters and conclude this galaxy is relatively young, intermediate-mass, consistent with low dust content, and has quenched only relatively recently. This recent quenching is confirmed by strong Balmer absorption, particularly . Remarkably, this proves that at least some intermediate-mass galaxies have already quenched as early as . Additionally, we have measured a velocity dispersion (), making this the highest-redshift quiescent galaxy with a dispersion measurement. We confirm that this galaxy falls on the same mass fundamental plane (MFP) as galaxies at z=2.2, consistent with little to no evolution in the MFP up to z=2.8. Overall this galaxy is proof of existence of intermediate-mass quenched galaxies in the distant universe, and that lensing is a powerful tool for determining their properties with improved accuracy.
13 pages, 11 figures, accepted to ApJ; January 28, 2016
References in corpus (20)
- The propagation of uncertainties in stellar population synthesis modeling I: The relevance of uncertain aspects of stellar evolution and the IMF to the derived physical properties of galaxies
- EAZY: A Fast, Public Photometric Redshift Code
- An ultra-deep near-infrared spectrum of a compact quiescent galaxy at z=2.2
- Detection of quiescent galaxies in a bicolor sequence from z=0-2
- The Herschel view of the dominant mode of galaxy growth from z=4 to the present day
- UltraVISTA: a new ultra-deep near-infrared survey in COSMOS
- A substantial population of massive quiescent galaxies at z~4 from ZFOURGE
- NICMOS Imaging of DRGs in the HDF-S: A Relation Between Star-Formation and Size at z ~ 2.5
- Dissipation and Extra Light in Galactic Nuclei: III. 'Core' Ellipticals and 'Missing' Light
- Velocity Dispersions and Dynamical Masses for a Large Sample of Quiescent Galaxies at z > 1: Improved Measures of the Growth in Mass and Size
- The stellar velocity dispersion of a compact massive galaxy at z=1.80 using X-Shooter: confirmation of the evolution in the mass-size and mass-dispersion relations
- A very bright, highly magnified Lyman-break galaxy at z=3.07
- A More Fundamental Plane
- MOSFIRE Absorption Line Spectroscopy of z > 2 Quiescent Galaxies: Probing a Period of Rapid Size Growth
- Direct Measurements of the Stellar Continua and Balmer/4000 Angstrom Breaks of Red z>2 Galaxies: Redshifts and Improved Constraints on Stellar Populations
- Tight Correlations Between Massive Galaxy Structural Properties and Dynamics: The Mass Fundamental Plane Was in Place by z~2
- M/L and Color Evolution for A Deep Sample of M* Cluster Galaxies at z~1: The Formation Epoch and the Tilt of the Fundamental Plane
- Discovery of a Quadruple Lens in CANDELS with a Record Lens Redshift z=1.53
- The Fundamental Plane of massive quiescent galaxies out to z~2
- The Relation between Dynamical Mass-to-Light Ratio and Color for Massive Quiescent Galaxies out to z~2 and Comparison with Stellar Population Synthesis Models
Cited by in corpus (20)
- Near infrared spectroscopy and star-formation histories of 3<z<4 quiescent galaxies
- A massive, dead disk galaxy in the early Universe
- The Large Early Galaxy Astrophysics Census (LEGA-C) Data Release II: dynamical and stellar population properties of z ~< 1 galaxies in the COSMOS field
- MOSFIRE Spectroscopy of Quiescent Galaxies at 1.5 < z < 2.5. I - Evolution of Structural and Dynamical Properties
- Stellar Velocity Dispersion of a Massive Quenching Galaxy at z=4.01
- Resolving Quiescent Galaxies at : I. Search for Gravitationally Lensed Sources and Characterization of their Structure, Stellar Populations, and Line Emission
- The mass, colour, and structural evolution of today's massive galaxies since z~5
- The KMOS Cluster Survey (KCS) I: The fundamental plane and the formation ages of cluster galaxies at redshift
- MAGAZ3NE: High Stellar Velocity Dispersions for Ultra-Massive Quiescent Galaxies at
- Compact, bulge dominated structures of spectroscopically confirmed quiescent galaxies at z~3
- In and out star formation in z~1.5 quiescent galaxies from rest-frame UV spectroscopy and the far-infrared
- Massive quiescent galaxies at : a comparison of selection, stellar population and structural properties with simulation predictions
- An exquisitely deep view of quenching galaxies through the gravitational lens: Stellar population, morphology, and ionized gas
- A Unique View of AGN-Driven Molecular Outflows: The Discovery of a Massive Galaxy Counterpart to a High-Metallicity Damped Lyman- Absorber
- Early results from GLASS-JWST. IX: First spectroscopic confirmation of low-mass quiescent galaxies at with NIRISS
- REQUIEM-2D: Spatially Resolved Stellar Populations from HST 2D Grism Spectroscopy
- REQUIEM-2D: A diversity of formation pathways in a sample of spatially-resolved massive quiescent galaxies at z~2
- The KMOS Cluster Survey (KCS) III: fundamental plane of cluster galaxies at in JKCS 041
- Near-infrared spectroscopy of 5 ultra-massive galaxies at 1.7 < z < 2.7
- A Computer Vision Approach To Identify Einstein Rings And Arcs