论文标题

大型酷芯群集Mac的多波长研究J1447.4+0827

A Multiwavelength Study of the Massive Cool Core Cluster MACS J1447.4+0827

论文作者

Prasow-Émond, M., Hlavacek-Larrondo, J., Rhea, C. L., Latulippe, M., Gendron-Marsolais, M. -L., Richard-Laferrière, A., Sanders, J. S., Edge, A. C., Allen, S. W., Mantz, A., von der Linden, A.

论文摘要

星系簇是理解超大黑洞反馈物理学的出色实验室。 Here, we present the first \textit{Chandra}, Karl G. Janksy Very Large Array and \textit{Hubble Space Telescope} analysis of MACS J1447.4+0827 ($z = 0.3755$), one of the strongest cool core clusters known, in which extreme feedback from its central supermassive black hole is needed to prevent the hot intracluster gas from cooling.使用这种多波长的方法,包括70 k \ textit {chandra} X射线观测值,我们检测到与南部和北部X射线腔相吻合的准直喷射流量的存在。与这些流出相关的总机械功率($ p _ {\ mathrm {cav}} \大约6 \ times 10^{44} $ erg s $^{ - 1} $)与防止热量内的灾难性冷却的灾难性冷却所需的能量与热量内的灾难性冷却所需10^{45} $ erg s $^{ - 1} $ for t $ _ \ mathrm {cool} $ = 7.7 gyrs);暗示强大的超级质量黑洞反馈已经在几个Macs J1447.7+0827的Macs中已经存在。此外,我们检测到直径超过300 kpc的无线电迷你山脉的存在($ p_ {1.4 \ mathrm {ghz}} = 3.0 \ pm 0.3 \ pm 0.3 \ times 10^{24} $ w hz $^$^$^{ - 1} $)。 X射线观测还显示出$ \ sim20 $ kpc的羽状结构,与围绕中央星系的光学灰尘丝相吻合。总体而言,这项研究表明,在附近的星系群中发生的各种物理现象也发生在它们更遥远的类似物中。

Clusters of galaxies are outstanding laboratories for understanding the physics of supermassive black hole feedback. Here, we present the first \textit{Chandra}, Karl G. Janksy Very Large Array and \textit{Hubble Space Telescope} analysis of MACS J1447.4+0827 ($z = 0.3755$), one of the strongest cool core clusters known, in which extreme feedback from its central supermassive black hole is needed to prevent the hot intracluster gas from cooling. Using this multiwavelength approach, including 70 ks of \textit{Chandra} X-ray observations, we detect the presence of collimated jetted-outflows that coincides with a southern and a northern X-ray cavity. The total mechanical power associated with these outflows ($P_{\mathrm{cav}} \approx 6 \times 10^{44}$ erg s$^{-1}$) is roughly consistent with the energy required to prevent catastrophic cooling of the hot intracluster gas ($L_{\mathrm{cool}} = 1.71 \pm 0.01 \times 10^{45}$ erg s$^{-1}$ for t$_\mathrm{cool}$ = 7.7 Gyrs); implying that powerful supermassive black hole feedback has been in place several Giga-years ago in MACS J1447.7+0827. In addition, we detect the presence of a radio mini-halo that extends over 300 kpc in diameter ($P_{1.4 \mathrm{GHz}} = 3.0 \pm 0.3 \times 10^{24}$ W Hz$^{-1}$). The X-ray observations also reveal a $\sim20$ kpc plume-like structure that coincides with optical dusty filaments that surround the central galaxy. Overall, this study demonstrates that the various physical phenomena occurring in the most nearby clusters of galaxies are also occurring in their more distant analogues.

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