论文标题

中央AGN周围的环核介质,在一个凉爽的簇中,Abell 1644-South

Circumnuclear Medium around the Central AGN in a Cool-Core Cluster, Abell 1644-South

论文作者

Baek, Junhyun, Chung, Aeree, Edge, Alastair, Rose, Tom, Kim, Jae-Woo, Jung, Taehyun

论文摘要

我们介绍了Abell 1644-South中心的最亮星系星系(BCG)的周环多相气体性能。 A1644-S是合并系统中的主要群集,它以X射线热气体在其核心中倾斜而闻名。 A1644-S的X射线曲线明显,这意味着存在强烈冷却的气芯。在这项研究中,我们分析了A1644-S中央区域的Alma CO(1-0)数据,JVLA HI数据和KAVA 22 GHz数据,以探测Cool Gas的潜在起源及其在(RE)为中央主动银河核(AGN)供电的(RE)中的作用。我们发现沿X射线气体晃动以弧形形状分布的co团块,这暗示着冷气与热量内介质(ICM)之间的联系。在吸收AGN连续发射时检测到HI和CN。在BCG的全身速度上观察到吸收倾角,并具有延伸的红移尾巴。基于HI,CN和CO气体的空间和光谱构型,可以推断出凉爽的气体螺旋形成BCG的核心,然后将其送入中央AGN。的确,我们的Kava观察结果显示出parsec尺度的双极喷射,这意味着该AGN可能是最近的动力。结合起来,我们建议在A1644-S中的一些冷气可以是由ICM的冷却形成的,从而触发了中央AGN的活性在冷核簇的早期开发中。

We present the circumnuclear multi-phase gas properties of the brightest cluster galaxy (BCG) in the center of Abell 1644-South. A1644-S is the main cluster in a merging system, which is well known for X-ray hot gas sloshing in its core. The sharply peaked X-ray profile of A1644-S implies the presence of a strongly cooling gas core. In this study, we analyze ALMA CO (1-0) data, JVLA HI data, and KaVA 22 GHz data for the central region of A1644-S to probe the potential origin of the cool gas and its role in (re)powering the central active galactic nucleus (AGN). We find CO clumps distributed in an arc shape along the X-ray gas sloshing, which is suggestive of a connection between the cold gas and the hot intracluster medium (ICM). HI and CN are detected in absorption against the AGN continuum emission. The absorption dip is observed at the systemic velocity of the BCG with an extended, redshifted tail. Based on the spatial and spectral configurations of the HI, CN and CO gases, it is inferred that cool gas spirals into the core of the BCG, which is then fed to the central AGN. Indeed, our KaVA observation reveals a parsec-scale bipolar jet, implying that this AGN could have been (re)powered quite recently. Combining this, we suggest that some cold gas in A1644-S could have been formed from the cooling of the ICM, triggering the activity of the central AGN in the early development of a cool-core cluster.

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