SDSS-IV MaNGA: galaxy gas-phase metallicity gradients vary across the mass-size plane
arXiv:2012.02362 · doi:10.1093/mnras/staa3785
Abstract
Gas-phase abundances and abundance gradients provide much information on past stellar generations, and are powerful probes of how galaxies evolve. Gas abundance gradients in galaxies have been studied as functions of galaxies' mass and size individually, but have largely not been considered across the galaxy mass--size plane. Thus, we investigate gas-phase abundance gradients across this plane, using a sample of over 1000 galaxies selected from the MApping Nearby Galaxies at APO (MaNGA) spectroscopic survey. We find that gradients vary systematically such that above , smaller galaxies display flatter gradients than larger galaxies at a given stellar mass. This mass--size behaviour cannot be explained by instrumental effects, nor is it simply a reflection of known trends between gradients and morphology. We explore multiple possibilities for a physical origin for this pattern, though further work is needed to establish a firm physical interpretation.
7 pages, 4 figures. Accepted by MNRAS
References in corpus (16)
- The 2.5 m Telescope of the Sloan Digital Sky Survey
- Overview of the SDSS-IV MaNGA Survey: Mapping Nearby Galaxies at Apache Point Observatory
- The MaNGA Integral Field Unit Fiber Feed System for the Sloan 2.5 m Telescope
- The Atlas3D Project - XXX. Star formation histories and stellar population scaling relations of early-type galaxies
- The Data Reduction Pipeline for the SDSS-IV MaNGA IFU Galaxy Survey
- The SDSS-IV MaNGA Sample: Design, Optimization, and Usage Considerations
- SDSS-IV MaNGA IFS Galaxy Survey --- Survey Design, Execution, and Initial Data Quality
- Clues to the Origin of the Mass-Metallicity Relation: Dependence on Star Formation Rate and Galaxy Size
- Metallicity gradients in local field star-forming galaxies: Insights on inflows, outflows, and the coevolution of gas, stars and metals
- Do galaxy global relationships emerge from local ones? The SDSS IV MaNGA surface mass density-metallicity relation
- The SAMI Galaxy Survey: Global stellar populations on the size-mass plane
- Gas-phase metallicity gradients of TNG50 star-forming galaxies
- From global to spatially resolved in low-redshift galaxies
- Metallicity gradients in small and nearby spiral galaxies
- SDSS-IV MaNGA: Variations in the N/O -- O/H relation bias metallicity gradient measurements
- The fundamental metallicity relation emerges from the local anti-correlation between star formation rate and gas-phase metallicity existing in disk galaxies
Cited by in corpus (12)
- The PHANGS-MUSE Nebula Catalogue
- Mapping the Galactic Metallicity Gradient with Open Clusters: The State-of-the-Art and Future Challenges
- L-GALAXIES 2020: The evolution of radial metallicity profiles and global metallicities in disc galaxies
- GASP and MaNGA surveys shed light on the enigma of the gas metallicity gradients in disk galaxies
- SDSS-IV MaNGA: drivers of stellar metallicity in nearby galaxies
- Gas metallicity distributions in SDSS-IV MaNGA galaxies: what drives gradients and local trends?
- How well do local relations predict gas-phase metallicity gradients? Results from SDSS-IV MaNGA
- The resolved chemical abundance properties within the interstellar medium of star-forming galaxies at
- Exploring the Gas-Phase Metallicity Gradients of Star-forming Galaxies at Cosmic Noon
- The Impact of Bars, Spirals and Bulge-Size on Gas-Phase Metallicity Gradients in MaNGA Galaxies
- MASCOT: Molecular gas depletion times and metallicity gradients -- evidence for feedback in quenching active galaxies
- SDSS-IV MaNGA: Exploring the local scaling relations for N/O