Nebular Dust Attenuation with the Balmer and Paschen Lines based on the MaNGA Survey
arXiv:2410.05067 · doi:10.1051/0004-6361/202451339
Abstract
Dust attenuations observed by stars and ionized gas are not necessarily the same. The lack of observational constraints on the nebular dust attenuation curve leaves a large uncertainty when correcting nebular dust attenuation with stellar continuum-based attenuation curves. Making use of the DAP catalogs of the MaNGA survey, we investigate the nebular dust attenuation of HII regions traced by the Balmer and Paschen lines. Based on a simple simulation, we find that star-forming regions on kpc scales favor the classic foreground screen dust model rather than the uniform mixture model. We propose a novel approach to fit the dust attenuation curve using the emission-line fluxes directly. For strong hydrogen recombination lines (e.g., H, H, and H), the slopes of the nebular attenuation curve can be well determined and are found to be in good agreement with the Fitzpatrick Milky Way extinction curve with an accuracy of in terms of the correction factor. However, severe contaminations/systematic uncertainties prevent us from obtaining reasonable values of the slopes for weak recombination lines (e.g., the high-order Balmer lines or the Paschen lines). We discuss how the choice of emission line measurement methods affects the results. Our results demonstrate the difficulty of deriving an average nebular dust attenuation curve given the current ground-based emission-line measurements.
Accepted for publication in A&A, 19 pages, 10 figures
References in corpus (31)
- Overview of the SDSS-IV MaNGA Survey: Mapping Nearby Galaxies at Apache Point Observatory
- PyNeb: a new tool for analyzing emission lines. I. Code description and validation of results
- Understanding Galaxy Evolution through Emission Lines
- The Cosmic Infrared Background Resolved by Spitzer. Contributions of Mid-Infrared Galaxies to the Far-Infrared Background
- The MaNGA Integral Field Unit Fiber Feed System for the Sloan 2.5 m Telescope
- 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
- Markov Chain Monte Carlo Methods for Bayesian Data Analysis in Astronomy
- SDSS-IV MaNGA: The Impact of Diffuse Ionized Gas on Emission-line Ratios, Interpretation of Diagnostic Diagrams, and Gas Metallicity Measurements
- CHAOS I: Direct Chemical Abundances for HII Regions in NGC 628
- Do galaxy global relationships emerge from local ones? The SDSS IV MaNGA surface mass density-metallicity relation
- Stellar Absorption Line Analysis of Local Star-Forming Galaxies: The Relation Between Stellar Mass, Metallicity, Dust Attenuation and Star Formation Rate
- Properties of the ionized gas in HH202. II: Results from echelle spectrophotometry with UVES
- The MOSDEF Survey: The First Direct Measurements of the Nebular Dust Attenuation Curve at High Redshift
- Dust Attenuation in High Redshift Galaxies -- 'Diamonds in the Sky'
- Paschen-line Constraints on Dust Attenuation and Star Formation at z~1-3 with JWST/NIRSpec
- Near-infrared emission line diagnostics for AGN from the local Universe to redshift 3
- Constraining Photoionization Models With a Reprojected Optical Diagnostic Diagram
- Correlation between the gas-phase metallicity and ionization parameter in extragalactic HII regions
- The homogeneity of chemical abundances in H II regions of the Magellanic Clouds
- The average dust attenuation curve at z~1.3 based on HST grism surveys
- CLEAR: Paschen- Star Formation Rates and Dust Attenuation of Low Redshift Galaxies
- Revisiting Attenuation Curves: the Case of NGC 3351
- Attenuation modified by DIG and dust as seen in M31
- Interpreting the star formation - extinction relation with MaNGA
- Variation of the Nebular Dust Attenuation Curve with the Properties of Local Star-forming Galaxies
- A Variant Stellar-to-nebular Dust Attenuation Ratio on Subgalactic and Galactic Scales
- The need for multicomponent dust attenuation in modeling nebular emission: Constraints from SDSS-IV MaNGA
- Using Multiple Emission Line Ratios to Constrain the Slope of the Dust Attenuation Law
- Toward a better understanding of the mid-infrared emission in the LMC