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Space Telescope Imaging Spectrograph Ultraviolet Spectra of Large Magellanic Cloud Planetary Nebulae: A Study of Carbon Abundances and Stellar Evolution*

机译:大型麦哲伦星系行星云的太空望远镜成像光谱仪紫外光谱:碳丰度和恒星演化的研究*

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We acquired spectra of 24 LMC planetary nebulae (PNs) in the 1150-3000?? range in order to determine carbon and other ionic abundances. The sample more than doubles the number of LMC PNs with high-quality UV spectra in this wavelength range and whose optical images are available in the Hubble Space Telescope archive. The Space Telescope Imaging Spectrograph was used with a very large aperture to obtain virtually slitless spectra; thus, the monochromatic images in the major nebula emission lines are also available. The analysis of the data shows extremely high quality spectra. This paper presents the emission lines identified and measured and the calculation of the ionic abundances of the emitting carbon and other ions, as well as total carbon abundance. P Cygni profiles have been found in a fraction of the nebulae, and the limiting velocities of the stellar winds estimated. The total carbon abundance can be inferred reliably in most nebulae. We found that the average carbon abundance in round and elliptical PNs is one order of magnitude larger than that of the bipolar PNs, while elliptical and round PNs with a bipolar core have a bimodal behavior. This results confirm that bipolarity in LMC PNs is tightly correlated with high-mass progenitors. When compared with predicted yields, we found that the observed abundance ratio shows a shift toward higher carbon abundances, which may be due to initial conditions assumed in the models not appropriate for LMC PNs.
机译:我们在1150年至3000年间获得了24个LMC行星状星云(PN)的光谱。确定碳和其他离子丰度的范围。该样品在此波长范围内具有高质量UV光谱的LMC PN的数量增加了一倍以上,其光学图像可从哈勃太空望远镜档案中获得。太空望远镜成像光谱仪使用非常大的孔径来获得几乎无狭缝的光谱。因此,主要星云发射线中的单色图像也是可用的。数据分析显示出非常高质量的光谱。本文介绍了已识别和测量的发射线,以及发射碳和其他离子的离子丰度以及总碳丰度的计算。在部分星云中发现了P Cygni轮廓,并估计了恒星风的极限速度。在大多数星云中可以可靠地推断出总碳丰度。我们发现,圆形和椭圆形PNs中的平均碳丰度比双极性PNs的平均碳丰度大一个数量级,而具有双极性核心的椭圆形和圆形PNs则具有双峰行为。该结果证实,LMC PNs中的双极性与高质量祖细胞紧密相关。当与预测的产量进行比较时,我们发现观察到的丰度比向更高的碳丰度方向转变,这可能是由于模型中假设的初始条件不适用于LMC PNs。

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