The Structures of Distant Galaxies V: The Evolution of Galaxy Structure in Stellar Mass at z < 1
arXiv:1206.3808 · doi:10.1111/j.1365-2966.2012.21287.x
Abstract
Galaxy structure and morphology is nearly always studied using the light originating from stars, however ideally one is interested in measuring structure using the stellar mass distribution. Not only does stellar mass trace out the underlying distribution of matter, it also minimises the effects of star formation and dust on the appearance and structure of a galaxy. We present in this paper a study of the stellar mass distributions and structures of galaxies at z<1 as found within the GOODS fields. We use pixel by pixel K-corrections to construct stellar mass and mass-to-light ratio maps of 560 galaxies of known morphology at magnitudes z_{850}<24. We measure structural and size parameters using these stellar mass maps, as well as on ACS BViz band imaging. This includes investigating the structural CAS-Gini-M_{20} parameters and half-light radius for each galaxy. We compare structural parameters and half-light radii in the ACS z_{850}-band and stellar mass maps, finding no systematic bias introduced by measuring galaxy sizes in z_{850}. We furthermore investigate relations between structural parameters in the ACS BViz bands and stellar mass maps, and compare our result to previous morphological studies. Combinations of various parameters in stellar mass generally reveal clear separations between early and late type morphologies, but cannot easily distinguish between star formation and dynamically disturbed systems. We also show that while ellipticals and early-type spirals have fairly constant CAS values at z<1 we find a tendency for late-type spiral and peculiar morphological types to have a higher A(M_{*}) at higher redshift. We argue that this, and the large fraction of peculiars that appear spiral-like in stellar mass maps, are possible evidence for either an active bulge formation in some late-type disks at z<1 or the presence of minor merger events.
27 pages, MNRAS in press
References in corpus (10)
- K-corrections and filter transformations in the ultraviolet, optical, and near infrared
- Size evolution of the most massive galaxies at 1.7<z<3 from GOODS NICMOS survey imaging
- The Structures of Distant Galaxies I: Galaxy Structures and the Merger Rate to z~3 in the Hubble Ultra-Deep Field
- The Fundamental Properties of Galaxies and a New Galaxy Classification System
- The Structures of Distant Galaxies - III: The Merger History of over 20,000 Massive Galaxies at z < 1.2
- The Properties and Evolution of a K-band Selected Sample of Massive Galaxies at z~0.4 - 2 in the Palomar/DEEP2 Survey
- Is the Gini coefficient a stable measure of galaxy structure?
- A Comparison of Galaxy Merger History Observations and Predictions from Semi-Analytic Models
- Spatially Resolved Galaxy Star Formation and its Environmental Dependence I
- Structure Through Colour: A Pixel Approach Towards Understanding Galaxies
Cited by in corpus (15)
- The Evolution of Galaxy Structure over Cosmic Time
- Bulge Growth and Quenching since z = 2.5 in CANDELS/3D-HST
- A CANDELS - 3D-HST Synergy: Resolved Star Formation Patterns at 0.7 < z < 1.5
- MegaMorph -- multi-wavelength measurement of galaxy structure: Sérsic profile fits to galaxies near and far
- The stellar mass structure of massive galaxies from z=0 to z=2.5; surface density profiles and half-mass radii
- Scientific Synergy Between LSST and Euclid
- Introducing piXedfit -- a Spectral Energy Distribution Fitting Code Designed for Resolved Sources
- Galaxy Sizes Since from the Perspective of Stellar Mass Distribution within Galaxies
- Kpc-scale Properties of Emission-line Galaxies
- Towards robust determination of non-parametric morphologies in marginal astronomical data: resolving uncertainties with cosmological hydrodynamical simulations
- The impact from survey depth and resolution on the morphological classification of galaxies
- Stellar populations, stellar masses and the formation of galaxy bulges and discs at in CANDELS
- Simulation-based inference of galaxy properties from JWST pixels
- The Halo Masses of Galaxies to : A Hybrid Observational and Theoretical Approach
- Galaxy kinematics across different environments in the RXJ1347-1145 cluster complex