A study of photoionized gas in two HII regions of the N44 complex in the LMC using MUSE observations
arXiv:2204.01293 · doi:10.3847/1538-4357/ac62ce
Abstract
We use the optical integral field observations with Multi-Unit Spectroscopic Explorer (MUSE) on the Very Large Telescope, together with CLOUDY photoionization models to study ionization structure and physical conditions of two luminous HII regions in N44 star-forming complex of the Large Magellanic Cloud. The spectral maps of various emission lines reveal a stratified ionization geometry in N44 D1. The spatial distribution of [O I] 6300A emission in N44 D1 indicates a partially covered ionization front at the outer boundary of the H II region. These observations reveal that N44 D1 is a Blister HII region. The [O I] 6300A emission in N44 C does not provide a well-defined ionization front at the boundary, while patches of [S II] 6717 A and [O I] 6300A emission bars are found in the interior. The results of spatially resolved MUSE spectra are tested with the photoionization models for the first time in these HII regions. A spherically symmetric ionization-bounded model with a partial covering factor, which is appropriate for a Blister HII region can well reproduce the observed geometry and most of the diagnostic line ratios in N44 D1. Similarly, in N44 C we apply a low density and optically thin model based on the observational signatures. Our modeling results show that the ionization structure and physical conditions of N44 D1 are mainly determined by the radiation from an O5 V star. However, local X-rays, possibly from supernovae or stellar wind, play a key role. In N44 C, the main contribution is from three ionizing stars.
Accepted for publication in ApJ
References in corpus (8)
- The MAPPINGS III Library of Fast Radiative Shock Models
- A distance to the Large Magellanic Cloud that is precise to one per cent
- Structural Analysis of Molecular Clouds: Dendrograms
- Nebular spectroscopy: A guide on H II regions and planetary nebulae
- Carbon and oxygen in HII regions of the Magellanic Clouds: abundance discrepancy and chemical evolution
- Optical spectroscopy of the recurrent nova RS Ophiuchi - from the outburst of 2006 to quiescence
- Optical spectroscopic and polarization properties of 2011 outburst of the recurrent nova T Pyxidis
- Molecular hydrogen emission in the interstellar medium of the Large Magellanic Cloud