Addressing the [O III]/H\b{eta} Offset of Dwarf Galaxies in the RESOLVE Survey
arXiv:1904.05912 · doi:10.1093/mnras/stz1085
Abstract
Metal poor dwarf galaxies in the local universe, such as those found in the RESOLVE galaxy survey, often produce high [O III]/H\b{eta} ratios close to the star forming demarcation lines of the diagnostic BPT diagram. Modeling the emission from these galaxies at lower metallicities generally underpredicts this line ratio, which is typically attributed to a deficit of photons >35 eV. We show that applying a model that includes empirical abundances scaled with metallicity strongly influences the thermal balance in HII regions and preserves the [O III]/H\b{eta} offset even in the presence of a harder radiation field generated by interacting binaries. Additional heating mechanisms are more successful in addressing the offset. In accordance with the high sSFR typical of dwarf galaxies in the sample, we demonstrate that cosmic ray heating serves as one mechanism capable of aligning spectral synthesis predictions with observations. We also show that incorporating a range of physical conditions in our modeling can create even better agreement between model calculations and observed emission line ratios. Together these results emphasize that both the hardness of the incident continuum and the variety of physical conditions present in nebular gas clouds must be accurately accounted for prior to drawing conclusions from emission line diagnostic diagrams.
10 pages, 6 figures, accepted for publication in MNRAS
References in corpus (19)
- The Host Galaxies and Classification of Active Galactic Nuclei
- Physical Properties of Wolf-Rayet Stars
- Binary Population and Spectral Synthesis Version 2.1: construction, observational verification and new results
- A Unified Representation of Gas-Phase Element Depletions in the Interstellar Medium
- Present-day cosmic abundances. A comprehensive study of nearby early B-type stars and implications for stellar and Galactic evolution and interstellar dust models
- The Effects of Stellar Rotation. II. A Comprehensive Set of Starburst99 Models
- Modelling the nebular emission from primeval to present-day star-forming galaxies
- H3+ in Diffuse Interstellar Clouds: a Tracer for the Cosmic-Ray Ionization Rate
- The elemental composition of the Sun II. The iron group elements Sc to Ni
- Nebular Emission Line Ratios in z~2-3 Star-Forming Galaxies with KBSS-MOSFIRE: Exploring the Impact of Ionization, Excitation, and Nitrogen-to-Oxygen Ratio
- The elemental composition of the Sun I. The intermediate mass elements Na to Ca
- Detection of Gamma Rays From a Starburst Galaxy
- The elemental composition of the Sun III. The heavy elements Cu to Th
- IZI: Inferring the Gas Phase Metallicity (Z) and Ionization Parameter (q) of Ionized Nebulae using Bayesian Statistics
- Dust-depletion sequences in damped Lyman-α absorbers: a unified picture from low-metallicity systems to the Galaxy
- Interpreting high [O III]/Hbeta ratios with maturing starbursts
- Sensitivity of PDR Calculations to Microphysical Details
- The Effect of Turbulence on Nebular Emission Line Ratios
- On the Effects of Dissipative Turbulence on the Narrow Emission-Line Ratios in Seyfert Galaxies