Are There Blue, Massive E/S0s at z < 1 ?: Kinematics of Blue Spheroidal Galaxy Candidates
arXiv:astro-ph/0105389 · doi:10.1086/322081
Abstract
Several recent studies find that 10 - 50% of morphologically selected field early-type galaxies at redshifts z <= 1 have blue colors indicative of recent star formation. Such ``blue spheroids''might be massive early-type galaxies with active star formation, perhaps induced by recent merger events. Alternatively, they could be starbursting, low-mass spheroids. To distinguish between these two choices, we have selected 10 ``Blue Spheroid Candidates'' (hereafter, BSCs) from a quantitatively selected E/S0 sample and studied their properties, including kinematics from Keck spectra obtained as part of the DEEP Groth Strip Survey (GSS). Most BSCs (70%) turn out to belong to two broad categories, while the remaining objects are likely to be misclassified objects. Type-1 BSCs have underlying red stellar components with bluer inner components. Type-2 BSCs do not show an obvious sign of the underlying red stellar component, and their overall colors are quite blue ((U-B)_rest < 0). Both Type-1 and Type-2 BSCs have internal velocity dispersions measured from emission lines sigma < 80$ km/sec and estimated dynamical masses of only a few times 10^10 M_sun or less. For Type-1 BSCs, we estimate sigma of the red component using the fundamental plane relation of distant field absorption-line galaxies and find that these sigma estimates are similar to the sigma measured from emission lines. Overall, we conclude that our Type-1 and Type-2 BSCs are more likely to be star-forming low mass spheroids than star-forming, massive, early-type galaxies.
Accepted for publication in the Astronomical Journal
Cited by in corpus (39)
- Galaxy Luminosity Functions to z~1: DEEP2 vs. COMBO-17 and Implications for Red Galaxy Formation
- Black holes in galaxy mergers: The formation of red elliptical galaxies
- The Dependence of Quenching upon the Inner Structure of Galaxies at 0.5<z< 0.8 in the DEEP2/AEGIS Survey
- Dependence of Galaxy Quenching on Halo Mass and Distance from its Centre
- The evolution of the near-IR galaxy Luminosity Function and colour bimodality up to z ~ 2 from the UKIDSS Ultra Deep Survey Early Data Release
- The K20 survey. V The evolution of the near-IR Luminosity Function
- The zCOSMOS Redshift Survey: the role of environment and stellar mass in shaping the rise of the morphology-density relation from z~1
- E/S0 Galaxies on the Blue Color-Stellar Mass Sequence at z=0: Fading Mergers or Future Spirals?
- Downsizing by Shutdown in Red Galaxies
- The Nature of E+A Galaxies in Intermediate Redshift Clusters
- The Cosmic Evolution Survey (COSMOS): The morphological content and enviromental dependence of the galaxy color-magnitude relation at z~0.7
- The Las Campanas IR Survey. II. Photometric redshifts, comparison with models and clustering evolution
- Galaxy-scale Star Formation on the Red Sequence: the Continued Growth of S0s and the Quiescence of Ellipticals
- SuperRAENN: A Semi-supervised Supernova Photometric Classification Pipeline Trained on Pan-STARRS1 Medium Deep Survey Supernovae
- Galaxy luminosity function per morphological type up to z=1.2
- Morphologies and Color Gradients of Luminous Evolved Galaxies at z~1.5
- Massive Galaxies are Larger in Dense Environments: Environmental Dependence of Mass-Size Relation of Early-Type Galaxies
- The Evolution of Early-type Field Galaxies Selected from a NICMOS Map of the Hubble Deep Field North
- The Luminosity Function of Early-Type Galaxies at z~0.75
- The DEEP Groth Strip Survey. I. The Sample
- The DEEP Groth Strip Galaxy Redshift Survey. VIII. The Evolution of Luminous Field Bulges at Redshift z ~ 1
- Central Blue Clumps in Elliptical Galaxies of the Hubble Ultra Deep Field
- The DEEP Groth Strip Survey VI. Spectroscopic, Variability, and X-ray Detection of AGN
- Optical-Near Infrared Color Gradients of Elliptical Galaxies and Their Environmental Dependence
- The Nature of Blue Early-Type Galaxies in the Goods Fields
- Structural Evidence for Environment-Driven Transformation of the Blue Galaxies in Local Abell Clusters - A85, A496, and A754
- The nature of the SDSS galaxies in various classes based on morphology, colour and spectral features -- I. Optical properties
- Deep U-B-V imaging of the Lockman Hole with the LBT. Observations and number counts
- CL 1358+62: Characterizing the Physical Properties of Cluster Galaxies at z=0.33
- Photometric Classification of 2315 Pan-STARRS1 Supernovae with Superphot
- Optical-NIR Color Gradients in Early Type Galaxies at z \leq 1.0
- Optical-Near Infrared Color Gradients And Merging History Of Elliptical Galaxies
- The nature of the SDSS galaxies in various classes based on morphology, colour and spectral features - II. Multi-wavelength properties
- Galaxy evolution by color-log(n) type since redshift unity in the Hubble Ultra Deep Field
- Structure of visible and dark matter components in spiral galaxies at redshifts z = 0.5-0.9
- The parallelism between galaxy clusters and early-type galaxies: III. The Mass-Radius Relationship
- A Search for Low Surface Brightness Structure Around Compact Narrow Emission Line Galaxies
- Comparative Study of Asymmetry Origin of Galaxies in Different Environments. II. Near-Infrared observations
- Structure and mass distribution of spiral galaxies at intermediate redshifts