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CHEMICAL ABUNDANCES AND DUST IN PLANETARY NEBULAE IN THE GALACTIC BULGE

机译:星系凸起中星云中的化学丰度和尘埃

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摘要

We present mid-infrared Spitzer spectra of 11 planetary nebulae in the Galactic bulge. We derive argon, neon, sulfur, and oxygen abundances for them using mainly infrared line fluxes combined with some optical line fluxes from the literature. Due to the high extinction toward the bulge, the infrared spectra allow us to determine abundances for certain elements more accurately than previously possible with optical data alone. Abundances of argon and sulfur (and in most cases neon and oxygen) in planetary nebulae in the bulge give the abundances of the interstellar medium at the time their progenitor stars formed; thus, these abundances give information about the formation and evolution of the bulge. The abundances of bulge planetary nebulae tend to be slightly higher than those in the disk on average, but they do not follow the trend of the disk planetary nebulae, thus confirming the difference between bulge and disk evolution. In addition, the bulge planetary nebulae show peculiar dust properties compared to the disk nebulae. Oxygen-rich dust features (crystalline silicates) dominate the spectra of all of the bulge planetary nebulae; such features are more scarce in disk nebulae. In addition, carbon-rich dust features (polycyclic aromatic hydrocarbons) appear in roughly half of the bulge planetary nebulae in our sample, which is interesting in light of the fact that this dual chemistry is comparatively rare in the Milky Way as a whole.
机译:我们介绍了银河膨胀中11个行星状星云的中红外Spitzer光谱。我们主要根据文献中的红外线通量和一些光线通量得出它们的氩,氖,硫和氧丰度。由于朝向凸起的高度消光,红外光谱使我们能够比以前单独使用光学数据更准确地确定某些元素的丰度。隆起中的行星状星云中充裕的氩和硫(大多数情况下为氖和氧)在其祖先恒星形成时提供了星际介质的丰度。因此,这些丰度提供了有关凸起形成和演化的信息。平均而言,凸起的行星状星云的丰度往往略高于圆盘中的星云,但它们并不遵循圆盘状行星状星云的趋势,因此证实了凸起和圆盘演化之间的差异。此外,与盘状星云相比,膨胀的行星状星云显示出特殊的尘埃特性。富氧的尘埃特征(结晶硅酸盐)主导了所有凸出的行星状星云的光谱;这些特征在盘状星云中更为稀少。另外,在我们的样本中大约一半的膨胀行星状星云中出现了富含碳的尘埃特征(多环芳烃),这很有趣,因为这种双重化学物质在整个银河系中相对较少。

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