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The growth of mass and metallicity in bulges and disks: CALIFA perspective

机译:凸起和磁盘中质量和金属性的增长:加利福萨视角

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CALIFA (Calar Alto Legacy Integral Field Area) is a 3D spectroscopic survey of 600 nearby galaxies that we are obtaining with PPaK@3.5m at Calar Alto (Sánchez et al. 2012; Husemann et al. 2012). This pioneer survey is providing valuable clues on how the mass and metallicity grow in the different galactic spatial sub-components ("bulge" and ”disk”). Processed through spectral synthesis techniques, CALIFA datacubes allow us to, for the first time, spatially resolve the star formation history of galaxies (Cid Fernandes et al. 2012). The richness of this approach is already evident from the results obtained for the first ~100 galaxies of the sample (Pérez et al. 2012). We have found that galaxies grow inside-out, and that the growth rate depends on a galaxy's mass. Here, we present the radial variations of physical properties sorting galaxies by their morphological type (Figure 1). We have found a good correlation between the stellar mass surface density, stellar ages and metallicities and the Hubble type, but being the the early type spirals (Sa-Sbc) the galaxies with strong negative age and metallicity gradient from the bulge to the disk.
机译:加利福尼亚(卡尔阿尔托遗产积分场区域)是300张附近的星系的3D光谱调查,我们在Calar Alto(Sánchez等,2012年; Husemann等,2012)中获得PPAK@3.5M。该先驱调查提供了有价值的线索,了解了质量和金属性在不同的银河空间子组件(“凸起”和“磁盘”)中的增长。通过光谱综合技术处理,加利福数据库允许我们在空间上解决星系的星形成历史(CID Fernandes等,2012)。这种方法的丰富性已经从样本的第一〜100个星系的结果获得(Pérez等,2012)。我们发现星系进入内外,而且增长率取决于银河系的质量。在这里,我们通过它们的形态类型提出了分类星系的物理性质的径向变化(图1)。我们已经发现了恒星质量表面密度,恒星衰老和金属性和哈勃型之间的良好相关性,但是作为早期螺旋(SA-SBC)具有强负衰老的星系和从膨胀到盘的金属梯度。

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