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Fornax 3D project: a two-dimensional view of the stellar initial mass function in the massive lenticular galaxy FCC 167

机译:Fornax 3D项目:大型双凸透镜状星系FCC 167中恒星初始质量函数的二维视图

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The stellar initial mass function (IMF) regulates the baryonic cycle within galaxies, and is a key ingredient for translating observations into physical quantities. Although it was assumed to be universal for decades, there is now growing observational evidence showing that the center of massive early-type galaxies hosts a larger population of low-mass stars than is expected based on observations from the Milky Way. Moreover, these variations in the IMF have been found to be related to radial metallicity variations in massive galaxies. We present here a two-dimensional stellar population analysis of the massive lenticular galaxy FCC 167 (NGC 1380) as part of the Fornax3D project. Using a newly developed stellar population fitting scheme, we derive a full two-dimensional IMF map of an early-type galaxy. This two-dimensional analysis allows us go further than a radial analysis, showing how the metallicity changes along a disk-like structure while the IMF follows a distinct, less disky distribution. Thus, our findings indicate that metallicity cannot be the sole driver of the observed radial IMF variations. In addition, a comparison with the orbital decomposition shows suggestive evidence of a coupling between stellar population properties and the internal dynamical structure of FCC 167, where metallicity and IMF maps seem to track the distribution of cold and warm orbits, respectively.
机译:恒星初始质量函数(IMF)调节星系中的重子循环,并且是将观测结果转换为物理量的关键要素。尽管它被假定具有数十年的普遍性,但现在越来越多的观测证据表明,大规模早期型星系的中心拥有比根据银河系的观测所预期的低质量恒星的人口更大。而且,已经发现IMF中的这些变化与大质量星系中的径向金属性变化有关。作为Fornax3D项目的一部分,我们在这里介绍二维大型星状FCC 167(NGC 1380)的恒星种群分析。使用新开发的恒星种群拟合方案,我们得出了早期类型星系的完整二维IMF图。这种二维分析使我们比径向分析更进一步,它显示了金属性如何沿盘状结构变化,而IMF遵循明显的,较少盘状分布。因此,我们的发现表明,金属性不能成为观察到的径向IMF变化的唯一驱动因素。此外,与轨道分解的比较表明,恒星种群特性与FCC 167的内部动力学结构之间存在耦合,这表明了暗示性的证据,其中金属性和IMF图似乎分别跟踪了冷和暖轨道的分布。

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