论文标题

计时器调查中的星系中的星系:内杆的恒星种群是主杆的缩放复制品

Galaxies within galaxies in the TIMER survey: stellar populations of inner bars are scaled replicas of main bars

论文作者

Bittner, Adrian, de Lorenzo-Cáceres, Adriana, Gadotti, Dimitri A., Sánchez-Blázquez, Patricia, Neumann, Justus, Coelho, Paula, Falcón-Barroso, Jesús, Fragkoudi, Francesca, Kim, Taehyun, Martín-Navarro, Ignacio, Méndez-Abreu, Jairo, Pérez, Isabel, Querejeta, Miguel, van de Ven, Glenn

论文摘要

内条是当地宇宙中频繁的结构,并认为会大大影响盘状星系的核区域。在这项研究中,我们通过得出其平均恒星种群含量的地图和径向曲线来探索内条的结构和动力学,并将其与主杆背景下的先前发现进行比较。为此,我们利用了计时器样本中三个双键星系的整体场光谱仪缪斯获得的观察结果。结果表明,仅凭其出色的种群特性就可以区分内部条。更确切地说,内杆表现出升高的金属性和耗尽的[$α$/fe]丰度。尽管与核盘相比,它们表现出较年轻的恒星年龄,但典型的年龄差异很小,除了其外部两端。与内部部分相比,内部条的这些末端显然年轻,这是从主杆上称为轨道年龄分离的效果。特别是,最年轻的恒星(即径向速度分散剂最低的恒星)似乎占据了(内部)杆大轴沿(内部)大轴沿最大的轨道。我们推测,这些不同的条形的末端可能与Ansae的形态特征有关。金属性和[$α$/fe]增强功能的径向曲线沿着内杆的主要轴平坦,但沿次要轴显示出明显陡峭的斜率。从主条中也知道内杆中的这种径向混合,并表明内杆显着影响恒星的径向分布。总而言之,基于平均恒星种群含量的地图和径向曲线,并且与先前的计时器结果一致,内部条似乎是在星系中看到的主要条形的版本。这表明了“银河系中的星系”的图片,核盘中的内条在动态上等同于主星系盘中的主杆。

Inner bars are frequent structures in the local Universe and thought to substantially influence the nuclear regions of disc galaxies. In this study we explore the structure and dynamics of inner bars by deriving maps and radial profiles of their mean stellar population content and comparing them to previous findings in the context of main bars. To this end, we exploit observations obtained with the integral-field spectrograph MUSE of three double-barred galaxies in the TIMER sample. The results indicate that inner bars can be distinguished based on their stellar population properties alone. More precisely, inner bars show elevated metallicities and depleted [$α$/Fe] abundances. Although they exhibit slightly younger stellar ages compared to the nuclear disc, the typical age differences are small, except at their outer ends. These ends of the inner bars are clearly younger compared to their inner parts, an effect known from main bars as orbital age separation. In particular, the youngest stars (i.e. those with the lowest radial velocity dispersion) seem to occupy the most elongated orbits along the (inner) bar major axis. We speculate that these distinct ends of bars could be connected to the morphological feature of ansae. Radial profiles of metallicity and [$α$/Fe] enhancements are flat along the inner bar major axis, but show significantly steeper slopes along the minor axis. This radial mixing in the inner bar is also known from main bars and indicates that inner bars significantly affect the radial distribution of stars. In summary, based on maps and radial profiles of the mean stellar population content and in line with previous TIMER results, inner bars appear to be scaled down versions of the main bars seen in galaxies. This suggests the picture of a "galaxy within a galaxy", with inner bars in nuclear discs being dynamically equivalent to main bars in main galaxy discs.

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