论文标题

3C 84的横向喷气机中的喷气运动学概述

Jet kinematics in the transversely stratified jet of 3C 84 A two-decade overview

论文作者

Paraschos, G. F., Krichbaum, T. P., Kim, J. -Y., Hodgson, J. A., Oh, J., Ros, E., Zensus, J. A., Marscher, A. P., Jorstad, S. G., Gurwell, M. A., Lähteenmäki, A., Tornikoski, M., Kiehlmann, S., Readhead, A. C. S.

论文摘要

3C84(NGC1275)是MM无线电波段中最明亮的无线电来源之一,多年来,在许多频率上导致了许多VLBI观察。他们揭示了两侧的喷气结构,其越来越膨胀但没有良好的parsec尺寸喷气机,向南指向。高分辨率的MM​​-VLBI观测值允许在低比例尺度上研究和成像。鉴于先前检测到的两排射流结构和以22 GHz为22 GHz的放射性抗体可见的两栏射流结构和面向东西方的核心区域,这也可能有助于研究喷气起源的性质。我们产生了该核心和内射流区域的VLBI图像,在过去的二十年中,在15、43和86 GHz中观察到。我们确定了内射流的运动学和43 GHz和86 GHz的弹出特征,并将其弹出时间与无线电和$γ$ -Ray的可变性进行比较。对于移动喷气机的功能,我们发现平均速度为$β^\ textrm {avg} _ \ textrm {app} = 0.055-0.22 $ c($μ^\ textrm {avg} = 0.04-0.18 \,$ mas/yr)。从三个频率的时间平均VLBI图像中,我们沿着散装流量测量横向射流宽度。在$ \ leq 1.5 $ PARSEC量表上,我们发现喷气宽度频率取决于频率的明显趋势,而射流在较高的频率下更窄。在脊柱鞘场景的背景下讨论了该分层,并将其与其他可能的解释进行了比较。从43和86 \ ghz处的准单相观测中,我们获得了光谱指数图,由于内射流的结构变化,揭示了光谱指数梯度的时间变化方向。

3C84 (NGC1275) is one of the brightest radio sources in the mm radio-bands, which led to a plethora of VLBI observations at numerous frequencies over the years. They reveal a two-sided jet structure, with an expanding but not well-collimated parsec-scale jet, pointing southward. High resolution mm-VLBI observations allow the study and imaging of the jet base on the sub-parsec scale. This could facilitate the investigation of the nature of the jet origin, also in view of the previously detected two-railed jet structure and east-west oriented core region seen with RadioAstron at 22 GHz. We produce VLBI images of this core and inner jet region, observed during the past twenty years at 15, 43, and 86 GHz. We determine the kinematics of the inner jet and ejected features at 43 and 86 GHz and compare their ejection times with radio and $γ$-ray variability. For the moving jet features, we find an average velocity of $β^\textrm{avg}_\textrm{app} = 0.055-0.22$c ($μ^\textrm{avg} = 0.04-0.18\,$mas/yr). From the time-averaged VLBI images at the three frequencies, we measure the transverse jet width along the bulk flow. On the $\leq 1.5$ parsec scale, we find a clear trend of the jet width being frequency dependent, with the jet being narrower at higher frequencies. This stratification is discussed in the context of a spine-sheath scenario, and is compared to other possible interpretations. From quasi-simultaneous observations at 43 and 86\,GHz we obtain spectral index maps, revealing a time-variable orientation of the spectral index gradient, due to structural variability of the inner jet.

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