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Quantifying the mixing due to bars

机译:量化由于棒子引起的混合

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We will present star formation histories and the stellar and gaseous metallicity gradients in the disk of a sample of 50 face-on spiral galaxies with and without bars observed with the integral field unit spectrograph PMAS. The final aim is to quantify the redistribution of mass and angular momentum in the galactic disks due to bars by comparing both the gas-phase and star-phase metallicity gradients on the disk of barred and non-barred galaxies. Numerical simulations have shown that strong gravitational torque by non-axisymmetric components induce evolutionary processes such as redistribution of mass and angular momentum in the galactic disks (Sellwood & Binney 2002) and consequent change of chemical abundance profiles. If we hope to understand chemical evolution gradients and their evolution we must understand the secular processes and re-arrangement of material by non-axisymmetric components and viceversa. Furthermore, the re-arrangement of stellar disk material influences the interpretation of various critical observed metrics of Galaxy evolution, including the age-metallicity relation in the solar neighborhood and the local G-dwarf metallicity distribution. Perhaps the most obvious of these aforementioned non-axisymmetric components are bars - at least 2/3 of spiral galaxies host a bar, and possibly all disk galaxies have hosted a bar at some point in their evolution. While observationally it has been found that barred galaxies have shallower gas-phase metallicity gradients than non-barred galaxies, a complementary analysis of the stellar abundance profiles has not yet been undertaken. This is unfortunate because the study of both gas and stars is important in providing a complete picture, as the two components undergo (and suffer from) very different evolutionary processes.
机译:我们将在有50个面对螺旋星系的样品的圆盘上呈现明星形成历史和恒星和气体金属金属金属梯度,其中没有用整体场单元光谱仪PMA观察到的条形图。最终目的是通过比较禁止和非禁止星系盘盘上的气相和星相金属梯度,量化由于棒的气体盘中的质量和角动量的重新分布。数值模拟表明,非轴对称组分的强重力扭矩诱导进化过程,如气体盘(Sellwood&Binney 2002)中的质量和角动量的重新分布,并随之改变化学丰度谱。如果我们希望了解化学进化梯度及其进化,我们必须通过非轴对称组件和伏牛皮来了解材料的世俗过程和重新安排。此外,恒星盘材料的重新布置影响了对星系进化的各种临界观察度量的解释,包括太阳能邻域中的年龄金属性关系和局部G-DWARF金属分布。也许这些上述非轴对称组件中最明显的是棒 - 至少2/3的螺旋星系举办酒吧,并且可能的所有磁盘星系都托管了一个在他们的演变中的一点。虽然观察性已经发现,禁止星系有较浅的气相金属丰度梯度比非禁止的星系中,恒星丰型材互补的分析尚未进行。这是不幸的,因为气体和恒星的研究在提供完整的图片方面很重要,因为两个组件经历的(并遭受)非常不同的进化过程。

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