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Planetary Nebula Abundances and Morphology: Probing the Chemical Evolution of the Milky Way

机译:行星状星云的丰度和形态:探索银河系的化学演化

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This paper presents a homogeneous study of abundances in a sample of 79 northern Galactic planetary nebulae (PNe) whose morphological classes have been uniformly determined. Ionic abundances and plasma diagnostics were derived from selected optical line strengths in the literature, and elemental abundances were estimated with the ionization correction factor developed by Kingsbourgh & Barlow in 1994. We compare the elemental abundances to the final yields obtained from stellar evolution models of low- and intermediate-mass stars, and we confirm that most bipolar PNe have high nitrogen and helium abundance and are the likely progeny of stars with main-sequence mass greater than 3 M☉. We derive = 0.27 and discuss the implication of such a high ratio in connection with the solar neon abundance. We determine the Galactic gradients of oxygen and neon and found Δ log(O/H)/ΔR = -0.01 dex kpc-1 and Δ log(Ne/H)/ΔR = -0.01 dex kpc-1. These flat PN gradients are irreconcilable with Galactic metallicity gradients flattening with time.
机译:本文对79个北部银河系行星状星云(PNe)的样品进行了均匀度研究,该样品的形态学类别已经确定。离子丰度和等离子体诊断是从文献中选定的光学谱线强度中得出的,而元素丰度是由Kingsbourgh&Barlow在1994年开发的电离校正因子估算的。我们将元素丰度与从低等恒星演化模型获得的最终产量进行比较-和中等质量恒星,我们确认大多数双极PNe具有高氮和氦丰度,并且是主序列质量大于3M☉的恒星的后代。我们得出= 0.27并讨论与太阳氖丰度有关的如此高的比率的含义。我们确定氧和氖的银河梯度,并发现Δlog(O / H)/ΔR= -0.01 dex kpc-1和Δlog(Ne / H)/ΔR= -0.01 dex kpc-1。这些平坦的PN梯度与随着时间变平的银河金属梯度不可调和。

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