An Optimal Strategy for Accurate Bulge-to-disk Decomposition of Disk Galaxies
arXiv:1709.00746 · doi:10.3847/1538-4357/aa7da4
Abstract
The development of two-dimensional (2D) bulge-to-disk decomposition techniques has shown their advantages over traditional one-dimensional (1D) techniques, especially for galaxies with non-axisymmetric features. However, the full potential of 2D techniques has yet to be fully exploited. Secondary morphological features in nearby disk galaxies, such as bars, lenses, rings, disk breaks, and spiral arms, are seldom accounted for in 2D image decompositions, even though some image-fitting codes, such as GALFIT, are capable of handling them. We present detailed, 2D multi-model and multi-component decomposition of high-quality -band images of a representative sample of nearby disk galaxies selected from the Carnegie-Irvine Galaxy Survey, using the latest version of GALFIT. The sample consists of five barred and five unbarred galaxies, spanning Hubble types from S0 to Sc. Traditional 1D decomposition is also presented for comparison. In detailed case studies of the 10 galaxies, we successfully model the secondary morphological features. Through a comparison of best-fit parameters obtained from different input surface brightness models, we identify morphological features that significantly impact bulge measurements. We show that nuclear and inner lenses/rings and disk breaks must be properly taken into account to obtain accurate bulge parameters, whereas outer lenses/rings and spiral arms have a negligible effect. We provide an optimal strategy to measure bulge parameters of typical disk galaxies, as well as prescriptions to estimate realistic uncertainties of them, which will benefit subsequent decomposition of a larger galaxy sample.
30 pages, 14 figures, published in ApJ; minor typos corrected
References in corpus (17)
- Structural Properties of Pseudo-Bulges, Classical Bulges and Elliptical Galaxies: an SDSS Perspective
- Dynamics of Barred Galaxies
- The structure of galactic disks: Studying late-type spiral galaxies using SDSS
- The Structure of Classical Bulges And Pseudobulges: The Link Between Pseudobulges And Sersic Index
- A Classical Morphological Analysis of Galaxies in the Spitzer Survey of Stellar Structure in Galaxies (S4G)
- Imfit: A Fast, Flexible New Program for Astronomical Image Fitting
- The Outer Disks of Early-Type Galaxies. I. Surface-Brightness Profiles of Barred Galaxies
- A catalogue of 2D photometric decompositions in the SDSS-DR7 spectroscopic main galaxy sample: preferred models and systematics
- Image Decomposition of Barred Galaxies and AGN Hosts
- Composite Bulges: The Coexistence of Classical Bulges and Disky Pseudobulges in S0 and Spiral Galaxies
- The Carnegie-Irvine Galaxy Survey. III. The Three-Component Structure of Nearby Elliptical Galaxies
- Milky Way mass galaxies with X-shaped bulges are not rare in the local Universe
- The Near-infrared S0 Survey III: Morphology of 15 Southern Early-type Disk Galaxies
- Bars, ovals and lenses in early-type disk galaxies: probes of galaxy evolution
- Photometric Decomposition of Barred Galaxies
- Evidence of Bar-induced Secular Evolution in the Inner Regions of Stellar Discs in Galaxies: What Shapes Disc Galaxies?
- How Robust Are the Size Measurements of High-redshift Compact Galaxies?
Cited by in corpus (20)
- Evolutionary Paths of Active Galactic Nuclei and Their Host Galaxies
- xGASS: HI fueling of star formation in disk-dominated galaxies
- Stellar Photometric Structures of the Host Galaxies of Nearby Type 1 Active Galactic Nuclei
- The Carnegie-Irvine Galaxy Survey. IX. Classification of Bulge Types and Statistical Properties of Pseudo Bulges
- Reverberation mapping of narrow-line Seyfert 1 galaxy I Zwicky 1: black hole mass
- Structural and photometric properties of barred galaxies from the Auriga cosmological simulations
- xGASS: The Impact of Photometric Bulges on the Scatter of HI Scaling Relations
- The Role of Major Mergers and Nuclear Star Formation in Nearby Obscured Quasars
- The Close AGN Reference Survey (CARS): Comparative analysis of the structural properties of star-forming and non-star-forming galaxy bars
- Galaxy And Mass Assembly (GAMA): Bulge-disk decomposition of KiDS data in the nearby universe
- Composite Bulges -- II. Classical Bulges and Nuclear Discs in Barred Galaxies: The Contrasting Cases of NGC 4608 and NGC 4643
- The Correlation between Black Hole Mass and Stellar Mass for Classical Bulges and the Cores of Ellipticals
- Do AGN triggering mechanisms vary with radio power? I.Optical morphologies of radio-intermediate HERGs
- Mass and Environment as Drivers of Galaxy Evolution. IV. On the Quenching of Massive Central Disk Galaxies in The Local Universe
- Galaxies decomposition with spiral arms -- II: A multiwavelength case study of M 51
- Panchromatic Photometry of Low-redshift, Massive Galaxies Selected from SDSS Stripe 82
- The Carnegie-Irvine Galaxy Survey. X. Bulges in Stellar Mass-based Scaling Relations
- Multiwavelength Bulge-Disk Decomposition for the Galaxy M81 (NGC 3031). I. Morphology
- 2D Surface Brightness Modelling of Large 2MASS Galaxies I: Photometry and Structural Parameters
- Predicting bulge to total luminosity ratio of galaxies using deep learning