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The parsec-scale structure of jet-driven H I out ows in radio galaxies

机译:喷射驱动的Parsec-Scal结构在无线电星系中的OWS OUT OWS

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Radio jets can play multiple roles in the feedback loop by regulating the accretion of the gas, by enhancing gas turbulence, and by driving gas outflows. Numerical simulations are beginning to make detailed predictions about these processes. Using high resolution VLBI observations we test these predictions by studying how radio jets of different power and in different phases of evolution affect the properties and kinematics of the surrounding H I gas. Consistent with predictions, we find that young (or recently restarted) radio jets have stronger impact as shown by the presence of H I outflows. The outflowing medium is clumpy with clouds of with sizes up to a few tens of pc and mass ~ 10~4M_⊙) already in the region close to the nucleus (< 100 pc), making the jet interact strongly and shock the surrounding gas. We present a case of a low-power jet where, as suggested by the simulations, the injection of energy may produce an increase in the turbulence of the medium instead of an outflow.
机译:通过通过增强气体湍流来调节气体的增强,通过调节气体,无线电喷气机可以在反馈回路中发挥多种作用。数值模拟开始详细预测这些过程。使用高分辨率VLBI观察,我们通过研究不同功率的无线电喷射和进化阶段的无线电喷射如何影响周围的H I气体的性质和运动学来测试这些预测。与预测一致,我们发现年轻(或最近重启)的无线电喷气机具有更强的影响,如Hi流出所示。在靠近核(<100 pC)的区域上,将过量的介质具有多达几十台的尺寸和质量〜10〜4m_⊙的云,使喷射器强烈相互作用并冲击周围气体。我们提出了一种低功率射流的情况,在那里,如模拟所提出的那样,能量的注射可以产生介质的湍流而不是流出的湍流。

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