论文标题

磁盘星系中螺旋臂的ISM金属性变化:在径向金属梯度存在下局部富集和气体迁移的影响

ISM metallicity variations across spiral arms in disk galaxies: the impact of local enrichment and gas migration in the presence of radial metallicity gradient

论文作者

Khoperskov, Sergey, Sivkova, Evgenia, Saburova, Anna, Vasiliev, Evgenii, Shustov, Boris, Minchev, Ivan, Walcher, C. Jakob

论文摘要

ISM中的化学丰度变化提供了有关银河进化,恒星形成和富集历史的重要信息。最近对磁盘星系的观察结果表明,如果在ISM中出现大规模的方位角金属性变化,则它们与螺旋臂有关。在这项工作中,使用对银河系样螺旋星系的一组化学动力学模拟,我们在存在先前存在的径向金属性梯度的情况下量化气体径向运动〜(迁移)的影响(迁移),以及局部ISM富集对螺旋形元素元素中ISM金属性的全球和局部变体的局部ISM富集。 在所有模型中,我们发现在给定的中心距离下,气体金属度的散射为\ 0.04-0.06 dex。在很大的尺度上,我们观察到ISM中螺旋状金属性模式的存在,在具有径向金属梯度的模型中更为突出。然而,在我们的模拟中,大规模ISM金属性分布的形态与恒星/气体成分的螺旋臂结构显着不同,导致沿螺旋臂的金属性趋势,导致正残留和负残留〜(减去径向梯度)金属性趋势。我们讨论了剩余的ISM金属性值与恒星形成速率,气体运动学和对螺旋臂的偏移的相关性,得出的结论是,径向金属性梯度的存在对于金属性的方位角变化至关重要。同时,仅局部富集就不太可能驱动整个螺旋形金属性的系统变化。

Chemical abundance variations in the ISM provide important information about the galactic evolution, star-formation and enrichment histories. Recent observations of disk galaxies suggest that if large-scale azimuthal metallicity variations appear in the ISM, they are linked to the spiral arms. In this work, using a set of chemodynamical simulations of the Milky Way-like spiral galaxies, we quantify the impact of gas radial motions~(migration) in the presence of a pre-existing radial metallicity gradient and the local ISM enrichment on both global and local variations of the mean ISM metallicity in the vicinity of the spiral arms. In all the models, we find the scatter of the gas metallicity of \approx0.04-0.06 dex at a given galactocentric distance. On large scales, we observe the presence of spiral-like metallicity patterns in the ISM which are more prominent in models with the radial metallicity gradient. However, in our simulations, the morphology of the large-scale ISM metallicity distributions significantly differs from the spiral arms structure in stellar/gas components resulting in both positive and negative residual~(after subtraction of the radial gradient) metallicity trends along spiral arms. We discuss the correlations of the residual ISM metallicity values with the star formation rate, gas kinematics and offset to the spiral arms, concluding that the presence of a radial metallicity gradient is essential for the azimuthal variations of metallicity. At the same time, the local enrichment alone is unlikely to drive systematic variations of the metallicity across the spirals.

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