论文标题

X射线发光NGC 1550 Galaxy组中AGN反馈和晃动的证据

Evidence of AGN feedback and sloshing in the X-ray luminous NGC 1550 galaxy group

论文作者

Kolokythas, Konstantinos, O'Sullivan, Ewan, Giacintucci, Simona, Worrall, Diana M., Birkinshaw, Mark, Raychaudhury, Somak, Horellou, Cathy, Intema, Huib, Loubser, Ilani

论文摘要

我们介绍了NGC 1550 Galaxy组的GMRT和Chandra观察结果。尽管以前被认为是放松的,但我们显示出证据表明气体倾斜和活跃的银河核(AGN)加热影响了系统的结构。 610和235 MHz的无线电图像显示了一个不对称的喷气机结构,总尺寸为$ \ sim $ 33 kpc,在更延伸的西部喷气机的底部尖锐的扭结,并且在进入叶子时弯曲了较短的东部喷气机。 235 $ - $ 610 MHz的光谱指数图显示,两个无线电裂片都有陡峭的频谱指数($α_{235}^{610} {610} \ GEQ-1.5 $),表明存在旧电子种群。 X射线图像揭示了与无线电结构相关的热气体中的不对称结构,以及与无线电裂片一致的潜在腔,其带有腔扩张的气体和气体的轮辋和臂。 X射线残留图显示了东部的弧形结构,类似于宽阔的冷锋。无线电光谱分析表明,源头的辐射年龄约为33 MYR,可与Lobes年龄的倾斜时间尺度和动态估计相媲美。对充气腔所需的机械能的估计表明,NGC 1550的AGN能够平衡来自群体内培养基(IGM)(IGM)的辐射损失并防止过度冷却,前提是AGN JET有效地耦合到IGM气体。总之,我们发现了无线电和X射线结构的宽度动作的证据,这表明NGC 1550大约33 Myr在33 MYR前受到次要合并或插入星系的扰动。

We present results from GMRT and Chandra observations of the NGC 1550 galaxy group. Although previously thought of as relaxed, we show evidence that gas sloshing and active galactic nucleus (AGN) heating have affected the structure of the system. The 610 and 235 MHz radio images show an asymmetric jet-lobe structure with a total size of $\sim$33 kpc, with a sharp kink at the base of the more extended western jet, and bending of the shorter eastern jet as it enters the lobe. The 235$-$610 MHz spectral index map shows that both radio lobes have steep spectral indices ($α_{235}^{610}\geq-1.5$) indicating the presence of an old electron population. The X-ray images reveal an asymmetric structure in the hot gas correlated with the radio structure, as well as potential cavities coincident with the radio lobes, with rims and arms of gas that may have been uplifted by the cavity expansion. The X-ray residual map reveals an arc shaped structure to the east that resembles a sloshing cold front. Radio spectral analysis suggests a radiative age of about 33 Myr for the source, comparable to the sloshing timescale and dynamical estimates of the age of the lobes. An estimate of the mechanical energy required to inflate the cavities suggests that the AGN of NGC 1550 is capable of balancing radiative losses from the intragroup medium (IGM) and preventing excessive cooling, providing that the AGN jets are efficiently coupled to the IGM gas. In conclusion, we find evidence of sloshing motions from both radio and X-ray structures, suggesting that NGC 1550 was perturbed by a minor merger or infalling galaxy about 33 Myr ago.

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