Galactic H II Regions in the LAMOST Medium-Resolution Spectroscopic Survey of Nebulae
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Abstract Based on LAMOST Medium-Resolution Spectroscopic Survey of Nebulae (MRS-N) data and the Wide-field Infrared Survey Explorer Galactic H II region catalog, we construct a sample of 280 Galactic H II regions and candidates in the outer Galaxy (80° ≲ l ≲ 220°). Using MRS-N optical spectra, we measure four emission lines (H α , [N II ] λ 6584, [S II ] λλ 6717, 6731) and use line ratios to spectroscopically confirm 255 H II regions, including 90 previously “Known” H II regions and 165 newly classified ones. We measure their T e , n e , and oxygen abundance and determine distances via associated OB stars and the kinematic method. The sample spans R gal from 8.16 to 15.36 kpc, enabling investigation of radial gradients in physical properties. We find that [N II ]/H α and [S II ]/H α decrease with increasing R gal , while [S II ]/[N II ] remains nearly flat; these trends are quite different from diffuse ionized gas (DIG). We derive the T e gradient of 344.530 ± 78.083 K kpc −1 and the log n e gradient of −0.143 ± 0.041 cm −3 kpc −1 . Oxygen abundance shows a steep slope of −0.044 ± 0.010 dex kpc −1 in the inner disk and a shallow slope of −0.016 ± 0.005 dex kpc −1 in the outer disk, with a global slope of −0.014 ± 0.005 dex kpc −1 . We also examine the two-dimensional distributions of T e , n e , and oxygen abundance and find that the gradients vary with azimuth. There is no obvious difference between spiral arm and interarm regions, and no trend appears along individual arms. From the [N II ]/H α [S II ] λ 6717/H α diagram, H II regions have a S + /S ratio (0.32) lower than that of DIG (0.43); however, heavy overlap prevents clear separation from this diagram alone.
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Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé, mais le titre doit être comparé manuellement.
- Titre Crossref
- Galactic H <scp>II</scp> Regions in the LAMOST Medium-Resolution Spectroscopic Survey of Nebulae
- Date Crossref
- 21/08/2026
- Éditeur
- American Astronomical Society
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
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