About Metallicity Variations in the Local Galactic Interstellar Medium
arXiv:2204.12258 · doi:10.3847/1538-4357/ac6b38
Abstract
In this paper we discuss and confront recent results on metallicity variations in the local interstellar medium, obtained from observations of HII regions and neutral clouds of the Galactic thin disk, and compare them with recent high-quality metallicity determinations of other tracers of the chemical composition of the interstellar medium as B-type stars, classical Cepheids and young clusters. We find that the metallicity variations obtained for these last kinds of objects are consistent with each other and with that obtained for HII regions but significantly smaller than those obtained for neutral clouds. We also discuss the presence of a large population of low-metallicity clouds as the possible origin for large metallicity variations in the local Galactic thin disk. We find that such hypothesis does not seem compatible with: (a) what is predicted by theoretical studies of gas mixing in galactic disks, and (b) the models and observations on the metallicity of high-velocity clouds and its evolution as they mix with the surrounding medium in their fall onto the Galactic plane. We conclude that that most of the evidence favors that the chemical composition of the interstellar medium in the solar neighborhood is highly homogeneous.
13 pages, 4 figures, accepted to be published in The Astrophysical Journal
References in corpus (28)
- Estimating distances from parallaxes. V: Geometric and photogeometric distances to 1.47 billion stars in Gaia Early Data Release 3
- A Unified Representation of Gas-Phase Element Depletions in the Interstellar Medium
- APOGEE Data and Spectral Analysis from SDSS Data Release 16: Seven Years of Observations Including First Results from APOGEE-South
- Present-day cosmic abundances. A comprehensive study of nearby early B-type stars and implications for stellar and Galactic evolution and interstellar dust models
- On the fine structure of the Cepheid metallicity gradient in the Galactic thin disk
- On the abundance discrepancy problem in HII regions
- The M33 Metallicity Project: Resolving the Abundance Gradient Discrepancies in M33
- Mapping metallicity variations across nearby galaxy disks
- The Open Cluster Chemical Abundances and Mapping Survey: IV. Abundances for 128 Open Clusters using SDSS/APOGEE DR16
- The Electron Temperature Gradient in the Galactic Disk
- Nebular spectroscopy: A guide on H II regions and planetary nebulae
- Properties of the ionized gas in HH202. II: Results from echelle spectrophotometry with UVES
- The Galactic radial abundance gradients of C, N, O, Ne, S, Cl and Ar from deep spectra of H II regions
- CHAOS VI: Direct Abundances in NGC 2403
- Large Metallicity Variations in the Galactic Interstellar Medium
- Gradients of chemical abundances in the Milky Way from HII regions: distances derived from Gaia EDR3 parallaxes and temperature inhomogeneities
- Mixing and transport of metals by gravitational instability-driven turbulence in galactic discs
- Oxygen abundance distribution in Galactic disc
- On the radial abundance gradients of nitrogen and oxygen in the inner Galactic disc
- METAL: The Metal Evolution, Transport, and Abundance in the Large Magellanic Cloud Hubble program. II. Variations of interstellar depletions and dust-to-gas ratio within the LMC
- Radial abundance gradients in the outer Galactic disk as traced by main-sequence OB stars
- Carbon, nitrogen and oxygen abundance gradients in M101 and M31
- The Te[N II]-Te[O III] temperature relation in H II regions and the reliability of strong-line methods
- Gas-phase Metallicity as a Diagnostic of the Drivers of Star-formation on Different Spatial Scales
- Mixing between High Velocity Clouds and the Galactic Halo
- Photoionized Herbig-Haro objects in the Orion Nebula through deep high-spectral resolution spectroscopy II: HH204
- Mass, Morphing, Metallicities: The Evolution of Infalling High Velocity Clouds
- The Effect of Mixing on the Observed Metallicity of the Smith Cloud
Cited by in corpus (14)
- Unveiling the time evolution of chemical abundances across the Milky Way disk with APOGEE
- The evolution of CNO elements in galaxies
- CHAOS VII: A Large-Scale Direct Abundance Study in M33
- Reliability and limitations of inferring birth radii in the Milky Way disk
- The homogeneity of chemical abundances in H II regions of the Magellanic Clouds
- HOMERUN a new approach to photoionization modelling. I -- reproducing observed emission lines with percent accuracy and obtaining accurate physical properties of the ionized gas
- The Distribution of Metallicities in the Local Galactic Interstellar Medium
- Gas-phase Fe/O and Fe/N abundances in Star-Forming Regions. Relations between nucleosynthesis, metallicity and dust
- A New Precise Determination of the Primordial Abundance of Deuterium: Measurement in the metal-poor sub-DLA system at z=3.42 towards quasar J1332+0052
- The resolved chemical composition of the starburst dwarf galaxy CGCG007-025: Direct method versus photoionization model fitting
- Comprehensive UV and Optical spectral analysis of Cygnus X-1: Stellar and wind parameters, abundances, and evolutionary implications
- MAGIS (Measuring Abundances of red super Giants with Infrared Spectroscopy) project I. Establishment of an abundance analysis procedure for red supergiants and its evaluation with nearby stars
- Constraining gas metal mixing strength in simulations using observations of the Milky Way's disc
- New SiS destruction and formation routes via neutral-neutral reactions and their fundamental role in interstellar clouds at low and high metallicity values