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首页> 外文期刊>Astronomy reports >Abundances of alpha-Process Elements in Thin-Disk, Thick-Disk, and Halo Stars of the Galaxy: Non-LTE Analysis
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Abundances of alpha-Process Elements in Thin-Disk, Thick-Disk, and Halo Stars of the Galaxy: Non-LTE Analysis

机译:薄盘,厚盘和Galo星星的alpha-process元素的丰富:非LTE分析

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The atmospheric parameters and abundances of Mg, Si, Ca, and Ti have been determined for 20 stars using the Gaia DR2 parallaxes, high-resolution spectra, and modeling of lines without assuming LTE (non-LTE modeling). A sample of stars with homogeneous data on the abundances of alpha-process elements has thus been increased to 94. It is shown that applying a non-LTE approach and classical ID atmospheric models with spectroscopically determined gravitational accelerations (log g) based on Fe I and Fe II lines yields reliable results. Analysis of the full sample confirms the conclusions of earlier studies indicating excesses of Mg, Si, Ca, and Ti relative to Fe for halo and thick-disk stars, and strong excesses of these elements for thick-disk stars relative to stars with similar metallicities in the thin disk. New results are also obtained. The ratios [Mg/Fe], [Si/Fe], [Ca/Fe], and [Ti/Fe] in the thick disk remain constant and similar to each other at the level similar to 0.3 when [Fe/H] less than or similar to -0.4, and fall off when the metallicity becomes higher, suggesting the onset of the production of iron in Type la supernovae. Halo stars have the same [alpha/Fe] values independent of their distance (within similar to 8 kpc of the Sun), providing evidence for a universal character of the evolution of the abundances of alpha-process elements in different parts of the Galaxy. The excess abundances relative to iron for halo stars are, on average, the same and at the level similar to 0.3 dex for Mg, Si, Ca, and Ti. These data are important for refining nucleosynthesis models. The scatter of [alpha/Fe] increases for [Fe/H] less than or similar to -2.6, but the scatter of the ratios between the different alpha-process elements remains small, possibly indicating incomplete mixing of nucleosynthesis products during the formation of these stars.
机译:使用Gaia DR2视差,高分辨率光谱和线的建模,已经确定了20颗Mg,Si,Ca和Ti的大气参数和丰度,而不假设LTE(非LTE建模)。因此,α-过程元素丰富的均匀数据的恒星样本已经增加到94.结果表明,基于FE I,将非LTE方法和经典ID大气模型应用于光谱确定的重力加速(LOG G)和Fe II系列产生可靠的结果。完整样本的分析证实了前面的研究表明MG,Si,CA和Ti的过度研究相对于晕和厚盘恒星的FE,以及相对于具有类似金属的恒星的厚圆形恒星的强大过量的这些元件在细磁盘中。还获得了新的结​​果。厚盘中的比例[Mg / Fe],[Si / Fe],[Ca / Fe]和[Ti / Fe]保持恒定,并且在[Fe / H]较少时的水平上彼此相似在金属性变高时比或类似于-0.4,并脱落,表明在LA超新型型铁的生产开始。光环恒星具有与其距离无关的相同的[alpha / fe]值(类似于8 kpc的太阳),提供了银河系不同部分中α-过程元素的丰富的普遍性的普遍性。对于Mg,Si,Ca和Ti,相对于卤素恒星相对于铁恒星的多余丰富是相同的,并且在与0.3dex类似的水平。这些数据对于精炼核酸合成模型非常重要。 [α/ Fe]的散射增加到-2.6的[Fe / H]增加或类似于-2.6,但不同α-过程元素之间的比率散射仍然很小,可能表明在形成期间核酸化产物的不完全混合这些星星。

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