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Hubble Space Telescope and Ground-based Observations of SN 1993J and SN 1998S: CNO Processing in the Progenitors*

机译:哈勃太空望远镜和SN 1993J和SN 1998S的地面观测:祖先中的CNO处理*

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Ground-based and Hubble Space Telescope observations are presented for SN 1993J and SN 1998S. SN 1998S shows strong, relatively narrow circumstellar emission lines of N III-V and C III-IV, as well as broad lines from the ejecta. Both the broad ultraviolet and optical lines in SN 1998S indicate an expansion velocity of ~7000 km s-1. The broad emission components of Lyα and Mg II are strongly asymmetrical after day 72 past the explosion and differ in shape from Hα. Different models based on dust extinction from dust in the ejecta or shock region, in combination with Hα from a circumstellar torus, are discussed. It is concluded, however, that the double-peaked line profiles are more likely to arise as a result of optical depth effects in the narrow, cool, dense shell behind the reverse shock than in a torus-like region. The ultraviolet lines of SN 1993J are broad, with a boxlike shape, coming from the ejecta and a cool, dense shell. The shapes of the lines are well fitted by a shell with inner velocity ~7000 km s-1 and outer velocity ~10,000 km s-1. For both SN 1993J and SN 1998S a strong nitrogen enrichment is found, with N/C ≈ 12.4 in SN 1993J and N/C ≈ 6.0 in SN 1998S. From a compilation of all supernovae with determined CNO ratios, we discuss the implications of these observations for the structure of the progenitors of Type II supernovae.
机译:介绍了SN 1993J和SN 1998S的地面和哈勃太空望远镜观测结果。 SN 1998S显示了N III-V和C III-IV的强而相对窄的星际发射线,以及来自喷出物的宽线。 SN 1998S中的宽紫外线线和光学线均表示〜7000 km s-1的膨胀速度。爆炸后第72天,Lyα和Mg II的广泛发射组分强烈不对称,并且形状与Hα不同。讨论了基于喷出或冲击区域中的灰尘灭绝的不同模型,并结合了来自恒星圆环的Hα。然而,得出的结论是,在反向冲击后的狭窄,凉爽,致密的壳体中,比在圆环状区域中,光学深度效应更容易产生双峰线轮廓。 SN 1993J的紫外线线很宽,呈盒子状,来自喷出物和凉爽致密的外壳。线的形状非常适合内部速度约为7000 km s-1且速度约为10,000 km s-1的壳体。对于SN 1993J和SN 1998S都发现了强大的氮富集,SN 1993J中的N / C≈12.4,SN 1998S中的N / C≈6.0。通过所有具有确定的CNO比的超新星的汇编,我们讨论了这些观测结果对II型超新星祖细胞结构的影响。

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