论文标题
对喷气主义相互作用的可观察到的签名:热发射和气体运动学
Modelling observable signatures of jet-ISM interaction: thermal emission and gas kinematics
论文作者
论文摘要
据信相对论喷气机对其宿主星系的星际介质(ISM)的气体动力学和演变产生了重大影响。在本文中,我们旨在通过分析模拟圆盘和球形系统中的喷射引起的冲击引起的发射形态和气体运动学来通过分析喷射主义相互作用的可观察到的互动之间的联系。我们发现,射流引起的横向扩展的能量气泡通过ISM扫除的前向冲击引起了大规模的流出,从而在整个宿主的整个核区域($ \ sim2 $ kpcs)产生了震惊的发射和高速分散体。喷射系统显示出更大的速度宽度(> 800 km/s),比没有喷气机的系统中的圆盘投影速度中更宽的位置 - 速度图和扭曲的对称性。我们还研究了观察者在星系的不同倾斜角上的上述数量。发现倾向于其宿主气盘的喷气机被发现限制在更长的时间内,因此与圆盘气体更加强烈。这导致引起的震惊发射和高速宽度,不仅沿着射流路径,而且在垂直于它们的地区。射流与气盘的强相互作用也会扭曲其形态。但是,喷气机逃脱了最初的限制后,喷射盘耦合被削弱,从而降低了震动的发射和速度宽度。
Relativistic jets are believed to have a substantial impact on the gas dynamics and evolution of the interstellar medium (ISM) of their host galaxies. In this paper, we aim to draw a link between the simulations and the observable signatures of jet-ISM interactions by analyzing the emission morphology and gas kinematics resulting from jet-induced shocks in simulated disc and spherical systems. We find that the jet-induced laterally expanding forward shock of the energy bubble sweeping through the ISM causes large-scale outflows, creating shocked emission and high-velocity dispersion in the entire nuclear regions ($\sim2$ kpcs) of their hosts. The jetted systems exhibit larger velocity widths (> 800 km/s), broader Position-Velocity maps and distorted symmetry in the disc's projected velocities than systems without a jet. We also investigate the above quantities at different inclination angles of the observer with respect to the galaxy. Jets inclined to the gas disc of its host are found to be confined for longer times, and consequently couple more strongly with the disc gas. This results in prominent shocked emission and high-velocity widths, not only along the jet's path, but also in the regions perpendicular to them. Strong interaction of the jet with a gas disc can also distort its morphology. However, after the jets escape their initial confinement, the jet-disc coupling is weakened, thereby lowering the shocked emission and velocity widths.