Spectroscopic Observations and Emission-Line Diagnoses for H ii Regions in the Late-Type Spiral Galaxy NGC 2403
arXiv:2509.00818 · doi:10.3390/universe11080280
Abstract
Being ionized nebulae where star formation events take place, H ii regions are not only natural laboratories for studying physical processes of star formation and photoionization but also signatures reflecting evolution of their internal stellar populations and hosting galaxies. In this paper, we present a comprehensive analysis of spectral emission-line data for H ii regions in the nearby spiral galaxy NGC 2403, aimed at gaining deep insight into underlying properties and evolution for the H ii regions and the galaxy. The spectroscopic data are obtained through observations with the 2.16 m telescope at National Astronomical Observatories of China and a collection of published data in the literature. Photoionization modeling is combined in the analysis for diagnosing the spectral features and interpreting the observational data with certain physical mechanisms. Results of this work not only involve estimates of a set of parameters such as metallicity, the ionization parameter, etc., and evolution stages for the H ii regions in NGC 2403 but also reveal distinct characteristics of different spectral features and their sensitivities to specific parameters, which provides an instructive implication for proper usages of emission-line diagnostics for H ii regions or galaxies nearby and far away.
32 pages, 10 figures, 4 tables. Accepted for publication in Universe
References in corpus (7)
- The MAPPINGS III Library of Fast Radiative Shock Models
- Understanding Galaxy Evolution through Emission Lines
- Nebular spectroscopy: A guide on H II regions and planetary nebulae
- The oxygen abundance in the inner HII regions of M101. Implications for the calibration of strong-line metallicity indicators
- CHAOS VI: Direct Abundances in NGC 2403
- A Comparison of Rotating and Binary Stellar Evolution Models: Effects on Massive Star Populations
- Radiation fields by intermediate-age stellar populations with binaries as ionizing sources of H II regions