4.6 Article

SDSS IV MaNGA: Metallicity and ionisation parameter in local star-forming galaxies from Bayesian fitting to photoionisation models

Journal

ASTRONOMY & ASTROPHYSICS
Volume 636, Issue -, Pages -

Publisher

EDP SCIENCES S A
DOI: 10.1051/0004-6361/201937203

Keywords

galaxies: ISM; galaxies: abundances; galaxies: evolution

Funding

  1. INAF PRINSKA 2017 programme [1.05.01.88.04]
  2. FONDECYT [1170618]
  3. ERC [695671]
  4. Science and Technology Facilities Council (STFC)
  5. NSF CAREER Award [AST-1554877]
  6. Alfred P. Sloan Foundation
  7. U.S. Department of Energy Office of Science
  8. Center for High-Performance Computing at the University of Utah
  9. Brazilian Participation Group
  10. Carnegie Institution for Science
  11. Carnegie Mellon University
  12. Chilean Participation Group
  13. French Participation Group
  14. Harvard-Smithsonian Center for Astrophysics
  15. Instituto de Astrofisica de Canarias
  16. Johns Hopkins University
  17. Kavli Institute for the Physics and Mathematics of the Universe (IPMU)/University of Tokyo
  18. Korean Participation Group
  19. Lawrence Berkeley National Laboratory
  20. Leibniz Institut fur Astrophysik Potsdam (AIP)
  21. Max-Planck-Institut fur Astronomie (MPIA Heidelberg)
  22. Max-Planck-Institut fur Astrophysik (MPA Garching)
  23. Max-PlanckInstitut fur Extraterrestrische Physik (MPE)
  24. National Astronomical Observatories of China
  25. New Mexico State University
  26. New York University
  27. University of Notre Dame
  28. Observatorio Nacional/MCTI
  29. Ohio State University
  30. Pennsylvania State University
  31. Shanghai Astronomical Observatory
  32. United Kingdom Participation Group
  33. Universidad Nacional Autonoma de Mexico
  34. University of Arizona
  35. University of Colorado Boulder
  36. University of Oxford
  37. University of Portsmouth
  38. University of Utah
  39. University of Virginia
  40. University of Washington
  41. University of Wisconsin
  42. Vanderbilt University
  43. Yale University
  44. STFC [ST/M001172/1] Funding Source: UKRI

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We measured gas-phase metallicity, ionisation parameter, and dust extinction for a representative sample of 1795 local star-forming galaxies using integral field spectroscopy from the SDSS-IV MaNGA survey. We self-consistently derive these quantities by comparing observed line fluxes with photoionisation models using a Bayesian framework. We also present the first comprehensive study of the [SIII]lambda lambda 9069,9532 nebular lines, which have long been predicted to be ideal tracers of the ionisation parameter. However, we find that current photoionisation model predictions substantially over-predict the intensity of the [SIII] lines, while broadly reproducing other observed optical line ratios. We discuss how to nonetheless make use of the information provided by the [SIII] lines by setting a prior on the ionisation parameter. Following this approach, we derive spatially resolved maps and radial profiles of metallicity and ionisation parameter. The metallicity radial profiles derived are comparable with previous works, with metallicity declining toward the outer parts and showing a flattening in the central regions. This is in agreement with infall models of galaxy formation, which predict that spiral discs build up through accretion of material, leading to an inside-out growth. On the other hand, ionisation parameter radial profiles are flat for low-mass galaxies, while their slope becomes positive as galaxy mass increases. However, the ionisation parameter maps we obtain are clumpy, especially for low-mass galaxies. The ionisation parameter is tightly correlated with the equivalent width of H alpha [EW(H alpha)], following a nearly universal relation, which we attribute to the change of the spectral shape of ionising sources due to ageing of HII regions. We derive a positive correlation between ionisation parameter and metallicity at fixed EW(H alpha), in disagreement with previous theoretical work that predict an anti-correlation.

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