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首页> 外文期刊>The Astrophysical journal >THE TRAILS OF SUPERLUMINAL JET COMPONENTS IN 3C 111
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THE TRAILS OF SUPERLUMINAL JET COMPONENTS IN 3C 111

机译:3C 111中超发光射流组件的轨迹

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In 1996 a major radio flux density outburst occurred in the broad-line radio galaxy 3C 111. It was followed by a particularly bright plasma ejection associated with a superluminal jet component, which has shaped the parsec-scale structure of 3C 111 for almost a decade. Here we present results from 18 epochs of Very Long Baseline Array (VLBA) observations conducted since 1995 as part of the VLBA 2 cm Survey and MOJAVE monitoring programs. This major event allows us to study a variety of processes associated with outbursts of radio-loud AGNs in much greater detail than has been possible in other cases: the primary perturbation gives rise to the formation of a leading and a following component, which are interpreted as a forward and a backward shock. Both components evolve in characteristically different ways and allow us to draw conclusions about the work flow of jet-production events; the expansion, acceleration and recollimation of the ejected jet plasma in an environment with steep pressure and density gradients are revealed; trailing components are formed in the wake of the primary perturbation, possibly as a result of coupling to Kelvin-Helmholtz instability pinching modes from the interaction of the jet with the external medium. The interaction of the jet with its ambient medium is further described by the linear-polarization signature of jet components traveling along the jet and passing a region of steep pressure/density gradients.
机译:1996年,在宽线射电星系3C 111中发生了一次主要的辐射通量密度爆发。随后,与超光速射流组件相关的特别明亮的等离子体射出,使近3C 111的视差尺度结构得以形成。 。在这里,我们介绍了自1995年以来进行的18个超长基线阵列(VLBA)观测的结果,这是VLBA 2 cm调查和MOJAVE监测程序的一部分。这一重大事件使我们能够比其他情况更详细地研究与无线电大声AGN爆发有关的各种过程:主要扰动引起前导分量和后继分量的形成,这被解释为作为向前和向后的冲击。这两个部分的发展特点各不相同,这使我们可以得出有关喷气机生产活动的工作流程的结论。揭示了在陡峭的压力和密度梯度的环境中,喷射的喷射等离子体的膨胀,加速和重新软化;在初级扰动之后形成拖尾分量,这可能是由于射流与外部介质相互作用而与开尔文-亥姆霍兹不稳定性收缩模式耦合的结果。射流与其周围介质的相互作用进一步通过沿射流行进并经过陡峭的压力/密度梯度区域的射流组件的线性极化特征来描述。

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