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首页> 外文期刊>The Astrophysical journal >TAGGING THE CHEMICAL EVOLUTION HISTORY OF THE LARGE MAGELLANIC CLOUD DISK*
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TAGGING THE CHEMICAL EVOLUTION HISTORY OF THE LARGE MAGELLANIC CLOUD DISK*

机译:标记大型麦哲伦云盘的化学演变历史*

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We have used high-resolution spectra obtained with the multifiber facility FLAMES at the Very Large Telescope of the European Southern Observatory to derive kinematic properties and chemical abundances of Fe, O, Mg, and Si for 89 stars in the disk of the Large Magellanic Cloud (LMC). The derived metallicity and [α/Fe], obtained as the average of O, Mg, and Si abundances, allow us to draw a preliminary scheme of the star formation history of this region of the LMC. The derived metallicity distribution shows two main components: one component (comprising ~84% of the sample) peaks at [Fe/H] = –0.48?dex and it shows an [α/Fe] ratio slightly under solar ([α/Fe] ~ –0.1?dex). This population probably originated in the main star formation event that occurred 3-4?Gyr ago (possibly triggered by tidal capture of the Small Magellanic Cloud). The other component (comprising ~16% of the sample) peaks at [Fe/H] ~ –0?dex and it shows an [α/Fe] ~0.2?dex. This population was probably generated during the long quiescent epoch of star formation between the first episode and the most recent bursts. Indeed, in our sample we do not find stars with chemical properties similar to the old LMC globular clusters nor to the iron-rich and α-poor stars recently found in the LMC globular cluster NGC?1718 and also predicted to be in the LMC field, thus suggesting that both of these components are small (1%) in the LMC disk population.
机译:我们已经使用了欧洲南部天文台超大型望远镜上的多纤维设施FLAMES获得的高分辨率光谱,得出了麦哲伦星系大圆盘中89颗恒星的运动学性质和Fe,O,Mg和Si的化学丰度(LMC)。作为O,Mg和Si丰度的平均值获得的派生金属性和[α/ Fe]使我们能够得出LMC该区域恒星形成历史的初步方案。推导的金属分布显示两个主要成分:一个成分(占样品的〜84%)在[Fe / H] = –0.48?dex时出现峰,并且在太阳光下[α/ Fe]时,其[α/ Fe]比略有增加。 ]〜–0.1?dex)。该种群可能起源于3-4年前发生的主要恒星形成事件(可能是由潮汐捕获小麦哲伦星云引起的)。其他成分(约占样品的16%)在[Fe / H]〜-0?dex时达到峰值,显示[α/ Fe]〜0.2?dex。该种群可能是在第一集和最近爆发之间的恒星形成的长时间静止期中产生的。确实,在我们的样本中,我们没有发现化学性质与旧的LMC球状星团相似的恒星,也没有发现与最近在LMC球状星团NGC?1718中发现并且也预测在LMC场中的富含铁和贫α的恒星相似,因此表明这两个组件在LMC磁盘总数中都很小(<1%)。

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