Spectroscopic bulge-disc decomposition: a new method to study the evolution of lenticular galaxies
arXiv:1202.6064 · doi:10.1111/j.1365-2966.2012.20813.x
Abstract
A new method for spectroscopic bulge-disc decomposition is presented, in which the spatial light profile in a two-dimensional spectrum is decomposed wavelength-by-wavelength into bulge and disc components, allowing separate one-dimensional spectra for each component to be constructed. This method has been applied to observations of a sample of nine S0s in the Fornax Cluster in order to obtain clean high-quality spectra of their individual bulge and disc components. So far this decomposition has only been fully successful when applied to galaxies with clean light profiles, consequently limiting the number of galaxies that could be separated into bulge and disc components. Lick index stellar population analysis of the component spectra reveals that in those galaxies where the bulge and disc could be distinguished, the bulges have systematically higher metallicities and younger stellar populations than the discs. This correlation is consistent with a picture in which S0 formation comprises the shutting down of star formation in the disc accompanied by a final burst of star formation in the bulge. The variation in spatial-fit parameters with wavelength also allows us to measure approximate colour gradients in the individual components. Such gradients were detected separately in both bulges and discs, in the sense that redder light is systematically more centrally concentrated in all components. However, a search for radial variations in the absorption line strengths determined for the individual components revealed that they are absent from the vast majority of S0 discs and bulges. The absence of gradients in line indices for most galaxies implies that the colour gradient cannot be attributed to age or metallicity variations, and is therefore most likely associated with varying degrees of obscuration by dust.
10 pages, 10 figures, 1 table, accepted for publication in MNRAS
References in corpus (3)
Cited by in corpus (52)
- Angular momentum and galaxy formation revisited
- SDSS-IV MaNGA: Spatially resolved star formation histories in galaxies as a function of galaxy mass and type
- The ATLAS3D project - XVII. Linking photometric and kinematic signatures of stellar discs in early-type galaxies
- The SLUGGS Survey: Wide-field Stellar Kinematics of Early-type Galaxies
- Galaxy And Mass Assembly (GAMA): the wavelength-dependent sizes and profiles of galaxies revealed by MegaMorph
- The Fornax 3D project: unveiling the thick disk origin in FCC 170: signs of accretion?
- Satellite abundances around bright isolated galaxies II: radial distribution and environmental effects
- Hiding in plain sight: An abundance of compact massive spheroids in the local Universe
- The Origin of S0s in Clusters: evidence from the bulge and disc star formation histories
- Planetary Nebula Spectrograph survey of S0 galaxy kinematics. II. Clues to the origins of S0 galaxies
- Combining Stellar Populations with Orbit-Superposition Dynamical Modelling - the Formation History of the Lenticular Galaxy NGC 3115
- Dissecting the Red Sequence: The Bulge and Disc Colours of Early-Type Galaxies in the Coma Cluster
- MHD simulations of ram pressure stripping of a disk galaxy
- SDSS-IV MaNGA: Bulge-Disc Decomposition of IFU Datacubes (BUDDI)
- Untangling galaxy components: full spectral bulge-disc decomposition
- The Fornax 3D project: Thick disks in a cluster environment
- Spectroscopic evidence of distinct stellar populations in the counter-rotating stellar disks of NGC 3593 and NGC 4550
- Signatures of stellar accretion in MaNGA early-type galaxies
- The two formation pathways of S0 galaxies
- Spectro-photometric decomposition of galaxy structural components
- Formation of S0s via disc accretion around high-redshift compact ellipticals
- The Next Generation Fornax Survey (NGFS): VII. A MUSE view of the nuclear star clusters in Fornax dwarf galaxies
- The Demographics of galactic bulges in the SDSS database
- Formation of S0s in extreme environments I: clues from kinematics and stellar populations
- Simulating the evolution of disc galaxies in a group environment. II. The influence of close-encounters between galaxies
- ProFuse: Physical Multi-Band Structural Decomposition of Galaxies and the Mass-Size-Age Plane
- The environmental dependence of the structure of galactic discs in STAGES S0 galaxies: implications for S0 formation
- Re-growth of stellar disks in mature galaxies: The two component nature of NGC 7217 revisited with VIRUS-W
- The continuous rise of bulges out of galactic disks
- Radially Extended Kinematics in the S0 Galaxy NGC 2768 from Planetary Nebulae, Globular Clusters and Starlight
- Spectroscopic decomposition of NGC 3521: unveiling the properties of the bulge and disc
- Caught in the act: Cluster `k+a' galaxies as a link between spirals and S0s
- Indications of the invalidity of the exponentiality of the disk within bulges of spiral galaxies
- Formation of S0s in extreme environments II: the star-formation histories of bulges, discs and lenses
- BUDDI-MaNGA II: The Star-Formation Histories of Bulges and Discs of S0s
- Quantifying the stellar ages of dynamically separated bulges and disks of CALIFA spiral galaxies
- Inside-out star formation quenching and the need for a revision of bulge-disk decomposition concepts for spiral galaxies
- Spectral decomposition of the stellar kinematics in the polar disk galaxy NGC 4650A
- The imprint of the thick stellar disc in the mid-plane of three early-type edge-on galaxies in the Fornax cluster
- Nuclear discs as clocks for the assembly history of early-type galaxies: the case of NGC4458
- Spectroscopic decomposition of the galaxy and halo of the cD galaxy NGC 3311
- BreakBRD Galaxies I: Global Properties of Spiral Galaxies with Central Star Formation in Red Disks
- A MUSE View of the Core of the Giant Low Surface Brightness Galaxy Malin 1
- Linking the Structural Properties of Galaxies and their Star Formation Histories with STAGES
- Comparison of the Stellar Populations of Bulges and Discs using the MaNGA Survey
- BUDDI-MaNGA I: A statistical sample of cleanly decomposed bulge and disc spectra
- On the genesis of spiral galaxies -- Classical and pseudo bulges as extremities of a continuous sequence
- Multi-spin stellar velocity maps of the most massive galaxies
- Orbit-based structural decomposition and stellar population recovery for edge-on barred galaxies
- Estimating the mass of galactic components using machine learning algorithms
- Understanding the transformation of spirals to lenticulars
- Stellar Populations of Spectroscopically Decomposed Bulge-Disk for S0 Galaxies from the CALIFA survey