Metallicity gradients in Local Universe galaxies: time evolution and effects of radial migration
arXiv:1602.02529 · doi:10.1051/0004-6361/201527799
Abstract
Our knowledge of the shape of radial metallicity gradients in disc galaxies has recently improved. Conversely, the understanding of their time evolution is more complex, since it requires analysis of stellar populations with different ages, or systematic studies of galaxies at different redshifts. In the Local Universe, Hii regions and planetary nebulae (PNe) are important tools to investigate it. We present an in-depth study of all nearby spiral galaxies (M33, M31, NGC300, and M81) with direct-method nebular abundances of both populations. For the first time, we also evaluate the radial migration of PN populations. We analyse Hii region and PN properties to: determine whether oxygen in PNe is a reliable tracer for past interstellar medium (ISM) composition; homogenise the published datasets; estimate the migration of the oldest stellar populations; determine the overall chemical enrichment and slope evolution. We confirm that oxygen in PNe is a reliable tracer for the past ISM metallicity. We find that PN gradients are flatter than or equal to those of Hii regions. When radial motions are negligible, this result provides a direct measurement of the time evolution of the gradient. For galaxies with dominant radial motions, we provide upper limits on the gradient evolution. Finally, the total metal content increases with time in all target galaxies, with early morphological type having a larger increment Delta(O/H) than late-type galaxies. Our findings provide important constraints to discriminate among different galactic evolutionary scenarios, favouring cosmological models with enhanced feedback from supernovae. The advent of extremely large telescopes will allow us to include galaxies in a wider range of morphologies and environments, thus putting firmer constraints to galaxy formation and evolution scenarios.
A&A accepted, 17 pages, 12 figures
References in corpus (24)
- Riding the Spiral Waves: Implications of Stellar Migration for the Properties of Galactic Disks
- Stellar Models and Yields of Asymptotic Giant Branch Stars
- Extragalactic chemical abundances: do HII regions and young stars tell the same story? The case of the spiral galaxy NGC 300
- Radial mixing and the transition between the thick and thin Galactic discs
- Metallicity gradients in local field star-forming galaxies: Insights on inflows, outflows, and the coevolution of gas, stars and metals
- Kinematic properties of early-type galaxy haloes using planetary nebulae
- The evolution of the Galactic metallicity gradient from high-resolution spectroscopy of open clusters
- Keck HIRES Spectroscopy of Extragalactic HII Regions: C and O Abundances from Recombination Lines
- The Abundance Properties of Nearby Late-Type Galaxies.I. The Data
- CHAOS I: Direct Chemical Abundances for HII Regions in NGC 628
- On the abundance discrepancy problem in HII regions
- A deep kinematic survey of planetary nebulae in the Andromeda Galaxy using the Planetary Nebula Spectrograph
- The oxygen abundance in the inner HII regions of M101. Implications for the calibration of strong-line metallicity indicators
- Impact of radial migration on stellar and gas radial metallicity distribution
- The Grism Lens-Amplified Survey from Space (GLASS). II. Gas-phase metallicity and radial gradients in an interacting system at z~2
- The building up of the disk galaxy M33 and the evolution of the metallicity gradient
- Signatures of the M31-M32 Galactic Collision
- The chemical composition of planetary nebulae and HII regions in NGC 3109
- Bright Planetary Nebulae and their Progenitors in Galaxies Without Star Formation
- The chemical content of nearby galaxies from planetary nebulae: NGC 147
- The radial metallicity gradient and the history of elemental enrichment in M81 through emission-line probes
- Molecular clouds in the center of M81
- The chemistry of planetary nebulae in the outer regions of M31
- Planetary nebulae: the universal mass-metallicity relation for Local Group dwarf galaxies and the chemistry of NGC 205
Cited by in corpus (41)
- De Re Metallica: The cosmic chemical evolution of galaxies
- Binary stars as the key to understanding planetary nebulae
- Nebular spectroscopy: A guide on H II regions and planetary nebulae
- Radial distribution of dust, stars, gas, and star-formation rate in DustPedia face-on galaxies
- The Gaia-ESO Survey: the present-day radial metallicity distribution of the Galactic disc probed by pre-main-sequence clusters
- The Gaia-ESO survey: mapping the shape and evolution of the radial abundance gradients with open clusters
- The physics of gas phase metallicity gradients in galaxies
- The Gaia-ESO Survey: Probes of the inner disk abundance gradient
- Stellar migrations and metal flows -- Chemical evolution of the thin disc of a simulated Milky Way analogous galaxy
- Evidence of ongoing radial migration in NGC 6754: Azimuthal variations of the gas properties
- A Tale of Two Disks: Mapping the Milky Way with the Final Data Release of APOGEE
- Measuring the mixing scale of the ISM within nearby spiral galaxies
- Gas-phase metallicity gradients in galaxies at
- The VMC survey -- XLIV: Mapping metallicity trends in the Large Magellanic Cloud using near-infrared passbands
- The Quest for the Missing Dust: II -- Two Orders of Magnitude of Evolution in the Dust-to-Gas Ratio Resolved Within Local Group Galaxies
- The resolved scaling relations in DustPedia: Zooming in on the local Universe
- The evolution of the Milky Way's thin disc radial metallicity gradient with K2 asteroseismic ages
- The survey of planetary nebulae in Andromeda (M 31) V. Chemical enrichment of the thin and thicker discs of Andromeda. Oxygen to argon abundance ratios for planetary nebulae and H II regions
- Formation of the Andromeda Giant Stream: Asymmetric Structure and Disc Progenitor
- The survey of planetary nebulae in Andromeda (M31). IV. Radial oxygen and argon abundance gradients of the thin and thicker disc
- Simulations of globular clusters within their parent galaxies: multiple stellar populations and internal kinematics
- Chemical Abundances of Planetary Nebulae in the Substructures of M31 -- II. The Extended Sample and A Comparison Study with the Outer-disk Group
- The impact of spectra quality on nebular abundances
- Metallicities in the Outer Regions of Spiral Galaxies
- Mild evolution of the stellar metallicity gradients of disc galaxies
- Spatially Resolved Gas-phase Metallicity in FIRE-2 Dwarfs: Late-Time Evolution of Metallicity Relations in Simulations with Feedback and Mergers
- Tracing the Galactic Disk with Planetary Nebulae using Gaia DR3
- Rise and fall of molecular clouds across the M33 disk
- Dancing in the void: hydrodynamical N-body simulations of the extremely metal poor galaxy DDO 68
- Neon, sulphur and argon abundances of planetary nebulae in the sub-solar metallicity Galactic anti-centre
- Discovery and analysis of a ULX nebula in NGC 3521
- Gathering dust: A galaxy-wide study of dust emission from cloud complexes in NGC 300
- A deep narrowband survey for planetary nebulae at the outskirts of M33
- Metallicity gradients in M31, M33, NGC 300 and the Milky Way using abundances of different elements
- Classifying spectra of emission-line regions with neural networks -- An application to integral field spectroscopic data of M33
- The breakBRD Breakdown: Using IllustrisTNG to Track the Quenching of an Observationally-Motivated Sample of Centrally Star-Forming Galaxies
- Evolution and star formation history of NGC300 from a chemical evolution model with radial gas inflows
- On the thermal line emission from the outflows in ultraluminous X-ray sources
- Metal-THINGS: gas metallicity gradients in nearby galaxies
- A comparative study of O, Ne, Cl, and Ar in Hii regions and PNe of the Galactic disk: Temporal evolution of radial gradients?
- KURVS: chemical properties from multiple strong line calibrations for star-forming galaxies at