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X-Shooter GTO: chemical analysis of a sample of EMP candidates

机译:X-Shooter GTO:EMP候选样品的化学分析

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Context. Extremely metal-poor stars (EMP) are very rare objects that hold in their atmospheres the fossil record of the chemical composition of the early phases of Galactic evolution. Finding these objects and determining their chemical composition provides important constraints on these early phases. Aims. Using a carefully designed selection method, we chose a sample of candidate EMP stars from the low resolution spectra of the Sloan Digital Sky Survey and observed them with X-Shooter at the VLT to confirm their metallicities and determine abundances for as many elements as possible. Methods. The X-Shooter spectra are analysed by means of one-dimensional, plane-parallel, hydrostatic model atmospheres. Corrections for the granulation effects are computed using CO5BOLD hydrodynamical simulations. Results. All the candidates are confirmed to be EMP stars, proving the efficiency of our selection method within about 0.5?dex. The chemical composition of this sample is compatible with those of brighter samples, suggesting that the stars in the Galactic halo are well mixed. Conclusions. These observations show that it is feasible to observe, in a limited amount of time, a large sample of about one hundred stars among EMP candidates selected from the SDSS. Such a size of sample will allow us, in particular, to confirm or refute the existence of a vertical drop in the Galactic halo metallicity distribution function around [Fe/H] ?~ ?3.5.
机译:上下文。极贫金属的恒星(EMP)是非常稀有的物体,在其大气层中保存着银河系演化早期化学成分的化石记录。找到这些物体并确定其化学成分为这些早期阶段提供了重要的限制。目的使用精心设计的选择方法,我们从Sloan Digital Sky Survey的低分辨率光谱中选择了一个候选EMP恒星样本,并在VLT处用X-Shooter对其进行了观测,以确认其金属性并确定尽可能多的元素的丰度。方法。 X-Shooter光谱是通过一维,平行于平面的静水压模型大气进行分析的。使用CO5BOLD流体力学模拟计算对造粒效果的修正。结果。所有候选人均被确认为EMP星,证明我们的选择方法的效率在0.5 dex左右以内。该样品的化学成分与较亮样品的化学成分兼容,这表明银河晕中的恒星混合良好。结论。这些观察结果表明,在有限的时间内观察到从SDSS选出的EMP候选物中大约100个恒星的大样本是可行的。如此大小的样本将使我们尤其可以确认或驳斥银河系晕圈金属分布函数在[Fe / H]α〜β3.5附近的垂直下降。

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