Are Milky-Way-like galaxies like the Milky Way? A view from SDSS-IV/MaNGA
arXiv:2212.09127 · doi:10.1093/mnras/stad853
Abstract
In this paper, we place the Milky Way (MW) in the context of similar-looking galaxies in terms of their star-formation and chemical evolution histories. We select a sample of 138 Milky-Way analogues (MWAs) from the SDSS-IV/MaNGA survey based on their masses, Hubble types, and bulge-to-total ratios. To compare their chemical properties to the detailed spatially-resolved information available for the MW, we use a semi-analytic spectral fitting approach, which fits a self-consistent chemical-evolution and star-formation model directly to the MaNGA spectra. We model the galaxies' inner and outer regions assuming that some of the material lost in stellar winds falls inwards. We also incorporate chemical enrichment from type II and Ia supernovae to follow the alpha-element abundance at different metallicities and locations. We find some MWAs where the stellar properties closely reproduce the distribution of age, metallicity, and alpha enhancement at both small and large radii in the MW. In these systems, the match is driven by the longer timescale for star formation in the outer parts, and the inflow of enriched material to the central parts. However, other MWAs have very different histories. These divide into two categories: self-similar galaxies where the inner and outer parts evolve identically; and centrally-quenched galaxies where there is very little evidence of late-time central star formation driven by material accreted from the outer regions. We find that, although selected to be comparable, there are subtle morphological differences between galaxies in these different classes, and that the centrally-quenched galaxies formed their stars systematically earlier.
16 pages, 9 figures, MNRAS accepted version
References in corpus (41)
- 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
- Improving the full spectrum fitting method: accurate convolution with Gauss-Hermite functions
- APOGEE Data and Spectral Analysis from SDSS Data Release 16: Seven Years of Observations Including First Results from APOGEE-South
- 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
- On the mass-to-light ratio of the local Galactic disc and the optical luminosity of the Galaxy
- The Gaia-ESO Survey: the Galactic Thick to Thin Disc transition
- Tracing chemical evolution over the extent of the Milky Way's Disk with APOGEE Red Clump Stars
- Firefly (Fitting IteRativEly For Likelihood analYsis): a full spectral fitting code
- Reconstructing the star formation history of the Milky Way disc(s) from chemical abundances
- The SAGA Survey. II. Building a Statistical Sample of Satellite Systems around Milky Way-like Galaxies
- From the bulge to the outer disc: StarHorse stellar parameters, distances, and extinctions for stars in APOGEE DR16 and other spectroscopic surveys
- The distribution of the ISM in the Milky Way A three-dimensional large-scale model
- The Gaia-ESO Survey: the chemical structure of the Galactic discs from the first internal data release
- SDSS-IV DR17: Final Release of MaNGA PyMorph Photometric and Deep Learning Morphological Catalogs
- The AMBRE Project: chemical evolution models for the Milky Way thick and thin discs
- APOGEE DR16: a multi-zone chemical evolution model for the Galactic disc based on MCMC methods
- The Formation Times and Building Blocks of Milky Way-mass Galaxies in the FIRE Simulations
- Stellar migrations and metal flows -- Chemical evolution of the thin disc of a simulated Milky Way analogous galaxy
- SDSS-IV MaNGA: Inside-out vs. outside-in quenching in different local environments
- Chemical evolution of the Milky Way: constraints on the formation of the thick and thin discs
- Metallicity calibrations for diffuse ionised gas and low ionisation emission regions
- The Similarity of Abundance Ratio Trends and Nucleosynthetic Patterns in the Milky Way Disk and Bulge
- Stellar Abundance Maps of the Milky Way Disk
- The effects of different Type Ia SN yields on Milky Way chemical evolution
- The Effects of radial inflow of gas and galactic fountains on the chemical evolution of M31
- How Unusual is the Milky Way's Assembly History?
- The spatial extension of extended narrow line regions in MaNGA AGN
- Milky Way Analogues in MaNGA: Multi-Parameter Homogeneity and Comparison to the Milky Way
- Does the Milky Way Obey Spiral Galaxy Scaling Relations?
- Recovering stellar population parameters via different population models and stellar libraries
- Exploring metallicity-dependent rates of Type Ia supernovae and their impact on galaxy formation
- From the Outside Looking in: What can Milky Way Analogues Tell us About the Star Formation Rate of Our Own Galaxy?
- SDSS-IV MaNGA: Environmental dependence of the Mgb/<Fe>-sigma_* relation for nearby galaxies
- The Effect of Bars on the Ionized ISM: Optical Emission Lines from Milky Way Analogs
- Semi-analytic spectral fitting: simultaneously modelling the mass accumulation and chemical evolution in MaNGA spiral galaxies
- SDSS-IV MaNGA: the chemical co-evolution of gas and stars in spiral galaxies
- L-GALAXIES 2020: The formation and chemical evolution of stellar haloes in Milky Way Analogues and galaxy clusters
- Modelling the chemical evolution of the Milky Way
Cited by in corpus (3)
- The SATIN project I: Turbulent multi-phase ISM in Milky Way simulations with SNe feedback from stellar clusters
- Searching for Milky Way twins: Radial abundance distribution as a strict criterion
- Stellar population modelling of neutron stars and black holes: spatially-resolved graveyards in MaNGA/SDSS-IV galaxies