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Updated: Jan 24, 2026

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Chemical composition of nebulosities in the magellanic clouds
L H Aller1, S J Czyzak, C D Keyes
1Department of Astronomy, The Ohio State University, Columbus, Ohio.
Abstract:
From photoelectric spectrophotometric data secured at Cerro Tololo Interamerican Observatory we have attempted to derive electron densities and temperatures, ionic concentrations, and chemical abundances of He, C, N, O, Ne, S, and Ar in nebulosities in the Magellanic Clouds. Although 10 distinct nebulosities were observed in the Small Cloud and 20 such objects in the Large Cloud, the most detailed observations were secured only for the brighter objects. Results for 30 Doradus are in harmony with those published previously and recent work by Peimbert and Torres-Peimbert. Nitrogen and heavier elements appear to be less abundant in the Small Cloud than in the Large Cloud, in accordance with the conclusions of Dufour. A comparison with the Orion nebula suggests He, N, Ne, O, and S may all be less abundant in the Megellanic Clouds, although adequate evaluations will require construction of detailed models. For example, if we postulate that the [NII], [OII], and [SII] radiations originate primarily in regions with electron temperatures near 8000 degrees K, while the [OIII], [NeIII], [ArIII], and H radiations are produced primarily in regions with T(epsilon) = 10,000 degrees K, the derived chemical abundances in the clouds are enhanced.
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