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Buoyancy-driven inflow to a relic cold core:the gas belt in radio galaxy 3C 386

机译:浮力驱动的流入文物冷芯:射电星系3C 386中的气带

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摘要

We report measurements from an XMM-Newton observation of the low-excitation radio galaxy 3C 386. The study focusses on an X-ray-emitting gas belt, which lies between and orthogonal to the radio lobes of 3C 386 and has a mean temperature of $0.94pm0.05$ keV, cooler than the extended group atmosphere. The gas in the belt shows temperature structure with material closer to the surrounding medium being hotter than gas closer to the host galaxy. We suggest that this gas belt involves a `buoyancy-driven inflow' of part of the group-gas atmosphere where the buoyant rise of the radio lobes through the ambient medium has directed an inflow towards the relic cold core of the group. Inverse-Compton emission from the radio lobes is detected at a level consistent with a slight suppression of the magnetic field below the equipartition value.
机译:我们从XMM-牛顿对低激发星系3C 386的观测报告了测量结果。该研究集中于发射X射线的气体带,该气体带位于3C 386的无线电波瓣之间并与之垂直,并且平均温度为$ 0.94 pm0.05 $ keV,比扩展小组氛围凉爽。带中的气体显示出温度结构,与周围介质相比,材料更热,而与主星系相比,气体则更热。我们认为,该气带涉及团气大气的一部分的“浮力驱动的流入”,其中通过周围介质的无线电波瓣的浮力上升将流入导向该组的文物冷芯。检测到来自无线电波瓣的逆康普顿辐射,其水平与将磁场略微抑制到均分值以下相一致。

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