Comparison of the Stellar Populations of Bulges and Discs using the MaNGA Survey
arXiv:2212.06284 · doi:10.1017/pasa.2022.58
Abstract
We use the MaNGA integral-field spectroscopic survey of low-redshift galaxies to compare the stellar populations of the bulge and disc components, identified from their Sersic profiles, for various samples of galaxies. Bulge dominated regions tend to be more metal-rich and have slightly older stellar ages than their associated disc dominated regions. The metallicity difference is consistent with the deeper gravitational potential in bulges relative to discs, which allows bulges to retain more of the metals produced by stars. The age difference is due to star formation persisting longer in discs relative to bulges. Relative to galaxies with lower stellar masses, galaxies with higher stellar masses tend to have bulge dominated regions that are more metal-rich and older (in light-weighted measurements) than their disc dominated regions. This suggests high-mass galaxies quench from the inside out, while lower-mass galaxies quench across the whole galaxy simultaneously. Early-type galaxies tend to have bulge dominated regions the same age as their disc dominated regions, while late-type galaxies tend to have disc dominated regions significantly younger than their bulge dominated regions. Central galaxies tend to have a greater metallicity difference between their bulge dominated regions and disc dominated regions than satellite galaxies at similar stellar mass. This difference may be explained by central galaxies being subject to mergers or extended gas accretion bringing new, lower-metallicity gas to the disc, thereby reducing the average metallicity and age of the stars; quenching of satellite discs may also play a role.
Accepted by PASA
References in corpus (22)
- Improving the full spectrum fitting method: accurate convolution with Gauss-Hermite functions
- New constraints on the chemical evolution of the solar neighbourhood and Galactic disc(s). Improved astrophysical parameters for the Geneva-Copenhagen Survey
- The MaNGA Integral Field Unit Fiber Feed System for the Sloan 2.5 m Telescope
- GALEX-SDSS-WISE Legacy Catalog (GSWLC): Star Formation Rates, Stellar Masses and Dust Attenuations of 700,000 Low-redshift Galaxies
- The SDSS-IV MaNGA Sample: Design, Optimization, and Usage Considerations
- Evolutionary stellar population synthesis with MILES - II. Scaled-solar and α-enhanced models
- Stellar Population gradients in galaxy discs from the CALIFA survey
- Morphology and star formation in IllustrisTNG: the build-up of spheroids and discs
- Stellar Population and Kinematic Profiles in Spiral Bulges & Disks: Population Synthesis of Integrated Spectra
- The SAURON project - XI. Stellar Populations from Absorption Line Strength Maps of 24 Early-Type Spirals
- Absorption line-strengths of 18 late-type spiral galaxies observed with SAURON
- The Origin of S0s in Clusters: evidence from the bulge and disc star formation histories
- SDSS-IV MaNGA: Radial Gradients in Stellar Population Properties of Early-Type and Late-Type Galaxies
- The Metallicity and Elemental Abundance Gradients of Simulated Galaxies, and their Environmental Dependence
- The bimodal [Mg/Fe] versus [Fe/H] bulge sequence as revealed by APOGEE DR14
- SDSS IV MaNGA: Full spectroscopic bulge-disc decomposition of MaNGA early-type galaxies
- The SAMI Galaxy Survey: stellar population gradients of central galaxies
- How Unusual is the Milky Way's Assembly History?
- Galaxy properties as revealed by MaNGA. III. Kinematic profiles and stellar population gradients in S0s
- Gravitational Potential and Surface Density Drive Stellar Populations -- II. Star-Forming Galaxies
- The SAMI Galaxy Survey: bulge and disk stellar population properties in cluster galaxies
- HERBS II: Detailed chemical compositions of Galactic bulge stars