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首页> 外文期刊>The Astrophysical journal >MULTI-ELEMENT ABUNDANCE MEASUREMENTS FROM MEDIUM-RESOLUTION SPECTRA. III. METALLICITY DISTRIBUTIONS OF MILKY WAY DWARF SATELLITE GALAXIES*
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MULTI-ELEMENT ABUNDANCE MEASUREMENTS FROM MEDIUM-RESOLUTION SPECTRA. III. METALLICITY DISTRIBUTIONS OF MILKY WAY DWARF SATELLITE GALAXIES*

机译:中等分辨率光谱的多元素丰度测量。三,银河矮星卫星星系的金属分布*

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We present metallicity distribution functions (MDFs) for the central regions of eight dwarf satellite galaxies of the Milky Way: Fornax, Leo I and II, Sculptor, Sextans, Draco, Canes Venatici I, and Ursa Minor. We use the published catalog of abundance measurements from the previous paper in this series. The measurements are based on spectral synthesis of iron absorption lines. For each MDF, we determine maximum likelihood fits for Leaky Box, Pre-Enriched, and Extra Gas (wherein the gas supply available for star formation increases before it decreases to zero) analytic models of chemical evolution. Although the models are too simplistic to describe any MDF in detail, a Leaky Box starting from zero metallicity gas fits none of the galaxies except Canes Venatici I well. The MDFs of some galaxies, particularly the more luminous ones, strongly prefer the Extra Gas Model to the other models. Only for Canes Venatici I does the Pre-Enriched Model fit significantly better than the Extra Gas Model. The best-fit effective yields of the less luminous half of our galaxy sample do not exceed 0.02 Z ☉, indicating that gas outflow is important in the chemical evolution of the less luminous galaxies. We surmise that the ratio of the importance of gas infall to gas outflow increases with galaxy luminosity. Strong correlations of average [Fe/H] and metallicity spread with luminosity support this hypothesis.
机译:我们介绍了银河系八个矮星系星系中心区域的金属分布函数(MDF):Fornax,Leo I和II,Sculptor,Sextans,Draco,Canes Venatici I和Ursa Minor。我们使用本系列前一篇文章中已发表的丰度测量目录。该测量基于铁吸收线的光谱合成。对于每种MDF,我们确定化学演化分析模型的渗漏箱,预富集气体和额外气体(其中恒星形成所用的气体供应量在其减少至零之前先增加)的最大似然拟合。尽管这些模型过于简单,无法详细描述任何MDF,但从零金属性气体开始的“漏水箱”除了Canes Venatici I以外都不适合任何星系。某些星系的MDF,尤其是夜光的星系,强烈喜欢Extra Gas模型而不是其他模型。仅对Canes Venatici I而言,预富集模型的拟合度明显优于Extra Gas模型。银河系样本中发光度较低的一半的最佳拟合有效产率不超过0.02 Z☉,这表明气体流出在发光度较低的星系的化学演化中很重要。我们推测,气体流入的重要性与气体流出的重要性之比随银河系发光度而增加。平均值[Fe / H]和金属分布与光度的强相关性支持了这一假设。

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