论文标题

具有运动学上不同核心星系的空间分辨特性

Spatially Resolved Properties of Galaxies with a Kinematically Distinct Core

论文作者

Omori, Kiyoaki Christopher, Takeuchi, Tsutomu T.

论文摘要

目标。相互作用的星系在其运动学结构中显示出独特的不规则性。通过调查显示出不规则性的星系的空间解决的运动学和出色的种群特性,我们可以详细描述其一生中发生的形成和进化过程。方法。在这项工作中,我们专注于具有特定运动学不规则性的星系,运动学上不同的恒星核心(KDC),尤其是相反的星系的反向旋转星系,在该星系中,星系的核心和主体在相反的方向上旋转。我们在视觉上从其恒星运动学中识别具有KDC的11个漫画星系,并研究了它们的空间分辨出恒星和气态运动学特性,即二维恒星和气态速度和气态速度和速度分散(σ)映射。此外,我们使用DN4000和Hδ梯度研究了恒星种群的特性以及空间分辨的恒星形成历史。结果。星系在恒星σ图中显示出多个中心的对称峰。气态速度和σ地图显示常规属性。恒星种群特性及其各自的梯度显示出不同的特性,具体取决于星系的空间分辨发射线诊断的结果,其中一些星系显示出内而外的淬火,而另一些则没有。根据空间分辨的发射线诊断,星形的形成历史也很大程度上有所不同,但是大多数星系显示出郊区或核心近期恒星形成的迹象。结论。我们发现具有反向旋转恒星核心的星系中的运动学和恒星种群特性有着明显的差异,具体取决于其使用空间分辨的排放线诊断的分类。

Aims. Interacting galaxies show unique irregularities in their kinematic structure. By investigating the spatially resolved kinematics and stellar population properties of galaxies that show irregularities, we can paint a detailed picture of the formation and evolutionary processes that took place during its lifetimes. Methods. In this work, we focus on galaxies with a specific kinematic irregularity, a kinematically distinct stellar core (KDC), in particular, counter-rotating galaxies where the core and main body of the galaxy are rotating in opposite directions. We visually identify eleven MaNGA galaxies with a KDC from their stellar kinematics, and investigate their spatially resolved stellar and gaseous kinematic properties, namely the two-dimensional stellar and gaseous velocity and velocity dispersion (σ) maps. Additionally, we examine the stellar population properties, as well as spatially resolved recent star formation histories using the Dn4000 and Hδ gradients. Results. The galaxies display multiple off-centred, symmetrical peaks in the stellar σ maps. The gaseous velocity and σ maps display regular properties. The stellar population properties and their respective gradients show differing properties depending on the results of the spatially resolved emission line diagnostics of the galaxies, with some galaxies showing inside-out quenching but others not. The star formation histories also largely differ based on the spatially resolved emission line diagnostics, but most galaxies show indications of recent star formation either in their outskirts or core. Conclusions. We find a distinct difference in kinematic and stellar population properties in galaxies with a counter-rotating stellar core, depending on its classification using spatially resolved emission line diagnostics.

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