论文标题
是什么驱动星系淬火?银河运动学与淬火在当地宇宙中的深厚联系
What drives galaxy quenching? A deep connection between galaxy kinematics and quenching in the local Universe
论文作者
论文摘要
我们开发了一个2D倾斜的旋转盘模型,该模型适用于从漫画调查中获取的1862个星系的恒星速度图(SDSS公共数据释放15)。我们使用随机的森林分类器来识别最连接到星系淬火的运动学参数。我们发现,主要与盘相关的运动学参数(例如平均旋转速度)和表征星系是旋转还是以分散为主的参数(例如,旋转速度与速度分散率的比率)与星形成的淬火没有根本上链接。取而代之的是,我们绝大多数发现它是速度分散的绝对水平(主要与星系凸起/球体组件相关的特性),对于分离恒星形成和淬火星系最为重要。此外,部分相关分析表明,银河系和淬火之间的许多常见相关性是虚假的,并且基本相关性是在淬灭和速度分散之间。特别是,我们发现在固定速度分散体下,淬火对圆盘特性的依赖性非常弱,从而更有可能形成恒星。通过调用黑洞质量与速度分散体之间的紧密关系,并指出黑洞质量追踪了AGN释放的总能量,我们认为这些数据支持了一种场景,在这种情况下,AGN的预防反馈会发生淬火。这项工作的运动测量值可公开可用。
We develop a 2D inclined rotating disc model, which we apply to the stellar velocity maps of 1862 galaxies taken from the MaNGA survey (SDSS public Data Release 15). We use a random forest classifier to identify the kinematic parameters that are most connected to galaxy quenching. We find that kinematic parameters that relate predominantly to the disc (such as the mean rotational velocity) and parameters that characterise whether a galaxy is rotation- or dispersion-dominated (such as the ratio of rotational velocity to velocity dispersion) are not fundamentally linked to the quenching of star formation. Instead, we find overwhelmingly that it is the absolute level of velocity dispersion (a property that relates primarily to a galaxy's bulge/spheroidal component) that is most important for separating star forming and quenched galaxies. Furthermore, a partial correlation analysis shows that many commonly discussed correlations between galaxy properties and quenching are spurious, and that the fundamental correlation is between quenching and velocity dispersion. In particular, we find that at fixed velocity dispersion, there is only a very weak dependence of quenching on the disc properties, whereby more discy galaxies are slightly more likely to be forming stars. By invoking the tight relationship between black hole mass and velocity dispersion, and noting that black hole mass traces the total energy released by AGN, we argue that these data support a scenario in which quenching occurs by preventive feedback from AGN. The kinematic measurements from this work are publicly available.