论文标题

看到森林和树木:对Ulirg MRK的无线电调查273

Seeing the forest and the trees: a radio investigation of the ULIRG Mrk 273

论文作者

Kukreti, Pranav, Morganti, Raffaella, Bondi, Marco, Oosterloo, Tom, Tadhunter, Clive, Morabito, Leah K., Adams, E. A. K., Adebahr, B., de Blok, W. J. G., de Gasperin, F., Drabent, A., Hess, K. M., Ivashina, M. V., Kutkin, A., Mika, Á. M., Oostrum, Leon, Shimwell, T. W., van der Hulst, J. M., van Leeuwen, Joeri, van Weeren, R. J., Vohl, Dany, Ziemke, J.

论文摘要

已经观察到通过将气体喂入中央大质量黑洞来触发核活动的星系合并。这样的物体是超发光红外星系(ULIRGS),它们主要是富含气体的星系的晚期主要合并。最近,在一定数量的Ulirgs中检测到了大规模($ \ sim $ 100 kpc)无线电连续发射,所有这些发射都具有强大的主动银河核(AGN)。这暗示存在大规模无线电排放是核活动的证据。探索无线电发射的起源及其与核活动的联系需要高灵敏度多频数据。我们对Ulirg MRK 273进行了这样的分析。使用国际Lofar望远镜(ILT),我们在该系统中检测到了壮观的大规模弧。该检测首次包括北部的巨大$ \ sim $ 190 kpc弧。我们建议这些弧线是由合并触发的低功率无线电AGN助长的。我们还确定了一个明亮的$ \ sim $ 45 kpc Radio Ridge,这可能与该地区的离子气星云有关。我们将其与来自焦点(apertif)中光圈图的高灵敏度数据和来自非常大阵列(VLA)的档案数据结合在一起,以探索光谱属性。 ILT同时使我们能够以$ \ sim $ 0.3 ARCSEC的分辨率探测细胞核,在那里我们检测到了三个组件,并且首次在这些组件周围弥漫发射。将其与原子核的档案高频VLA图像相结合,使我们能够检测到一个分量中的吸收,而在另一个组件中可以检测到陡峭的频谱无线电AGN。然后,我们从这个案例研究推断出研究更多Ulirgs中无线电发射的重要性,以及它可以告诉我们合并之间的联系与无线电活动的存在。

Galaxy mergers have been observed to trigger nuclear activity by feeding gas to the central supermassive black hole. One such class of objects are Ultra Luminous InfraRed Galaxies (ULIRGs), which are mostly late stage major mergers of gas-rich galaxies. Recently, large-scale ($\sim$100 kpc) radio continuum emission has been detected in a select number of ULIRGs, all of which also harbour powerful Active Galactic Nuclei (AGN). This hints at the presence of large-scale radio emission being evidence for nuclear activity. Exploring the origin of this radio emission and its link to nuclear activity requires high sensitivity multi-frequency data. We present such an analysis of the ULIRG Mrk 273. Using the International LOFAR telescope (ILT), we detected spectacular large-scale arcs in this system. This detection includes, for the first time, a giant $\sim$190 kpc arc in the north. We propose these arcs are fuelled by a low power radio AGN triggered by the merger. We also identified a bright $\sim$45 kpc radio ridge, which is likely related to the ionised gas nebula in that region. We combined this with high sensitivity data from APERture Tile In Focus (Apertif) and archival data from the Very Large Array (VLA) to explore the spectral properties. The ILT simultaneously allowed us to probe the nucleus at a resolution of $\sim$0.3 arcsec, where we detected three components, and, for the first time, diffuse emission around these components. Combining this with archival high frequency VLA images of the nucleus allowed us to detect absorption in one component, and a steep spectrum radio AGN in another. We then extrapolate from this case study to the importance of investigating the presence of radio emission in more ULIRGs and what it can tell us about the link between mergers and the presence of radio activity.

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