Potential Importance of Binary Evolution in UV-Optical Spectral Fitting of Early-Type Galaxies
arXiv:1302.0927 · doi:10.1088/0004-637X/776/1/37
Abstract
Binaries are very common in galaxies, and more than half of Galactic hot subdwarf stars, which are thought as a possible origin of UV-upturn of old stellar populations, are found in binaries. Previous works showed that binary evolution can make the spectra of binary star populations significantly different from those of single star populations. However, the effect of binary evolution has not been taken into account in most works of spectral fitting of galaxies. This paper studies the role of binary evolution in spectral fitting of early-type galaxies, via a stellar population synthesis model including both single and binary star populations. Spectra from ultraviolet to optical band are fitted to determine a few parameters of galaxies. The results show that the inclusion of binaries in stellar population models may lead to obvious change in the determination of some galaxy parameters and therefore it is potentially important for spectral studies. In particular, the ages of young components of composite stellar populations become much older when using binary star population models instead of single star population models. This implies that binary star population models will measure significantly different star formation histories (SFHs) for galaxies compared to single star population models. In addition, stellar population models with binary interactions measure larger dust extinctions than single star population models on average. It suggests that when using binary star population models instead of single star population models, negative extinctions are possibly unnecessary in spectral fitting of early-type galaxies.
26 pages, 8 figures, Submitted to ApJ
References in corpus (8)
- The star formation histories of galaxies in the Sloan Digital Sky Survey
- Recovering galaxy star formation and metallicity histories from spectra using VESPA
- A binary model for the UV-upturn of elliptical galaxies (MNRAS version)
- Spectroscopic ages and metallicities of stellar populations: validation of full spectrum fitting
- Combined Effects of Binaries and Stellar Rotation on the Color-Magnitude Diagrams of Intermediate-Age Star Clusters
- An Isochrone Database and a Rapid Model for Stellar Population Synthesis
- How binary interactions affect spectral stellar population synthesis
- Integrated spectral energy distributions of binary star composite stellar populations
Cited by in corpus (8)
- The Evolution of Compact Binary Star Systems
- Global Modeling of Nebulae with Particle Growth, Drift and Evaporation Fronts. I: Methodology and Typical Results
- BayeSED: A General Approach to Fitting the Spectral Energy Distribution of Galaxies
- Likelihood-free Cosmological Constraints with Artificial Neural Networks: An Application on Hubble Parameters and SNe Ia
- Powerful CMD: A Tool for Colour-Magnitude Diagram Studies
- Galaxy And Mass Assembly (GAMA): Defining Passive Galaxy Samples and Searching for the UV Upturn
- Lick Indices and Spectral Energy Distribution Analysis based on an M31 Star Cluster Sample: Comparisons of Methods and Models
- A database of spectral energy distributions of progenitors of core-collapse supernovae