论文标题
从活性银河核中的电离流出作为反馈的基本要素
Ionized outflows from active galactic nuclei as the essential elements of feedback
论文作者
论文摘要
来自活性银河核(AGN)的流出是中央超级黑洞与宿主星系相互作用的基本机制之一。在附近的AGN的$ \ ge 50 \%$中检测到,这些流出的流出能够带有动力学的动力,这是AGN功率的很大一部分,从而给他们的宿主星系提供了负面的反馈。要了解调节它们的物理过程,重要的是要对其物理和动态参数进行强有力的估计。在这篇综述中,我们总结了我们目前对紫外线和X射线波长带吸收的离子流出流的物理学的理解。我们讨论了流出参数测量中最相关的观察结果以及当前的知识和不确定性。我们还讨论了它们的起源和加速机制。大型望远镜任务的调试和概念研究在紫外线/光学和X射线中具有高分辨率光谱仪以及模拟的快速进步为未来十年的发现提供了巨大的希望。
Outflows from active galactic nuclei (AGN) are one of the fundamental mechanisms by which the central supermassive black hole interacts with its host galaxy. Detected in $\ge 50\%$ of nearby AGN, these outflows have been found to carry kinetic energy that is a significant fraction of AGN power, and thereby give negative feedback to their host galaxies. To understand the physical processes that regulate them, it is important to have a robust estimate of their physical and dynamical parameters. In this review we summarize our current understanding on the physics of the ionized outflows detected in absorption in the UV and X-ray wavelength bands. We discuss the most relevant observations and our current knowledge and uncertainties in the measurements of the outflow parameters. We also discuss their origin and acceleration mechanisms. The commissioning and concept studies of large telescope missions with high resolution spectrographs in UV/optical and X-rays along with rapid advancements in simulations offer great promise for discoveries in this field over the next decade.