论文标题

VLBA-BU-BLAZAR计划的十年

Kinematics of Parsec-Scale Jets of Gamma-Ray Bright Blazars at 43 GHz during Ten Years of the VLBA-BU-BLAZAR Program

论文作者

Weaver, Zachary R., Jorstad, Svetlana G., Marscher, Alan P., Morozova, Daria A., Troitsky, Ivan S., Agudo, Iván, Gómez, José L., Lähteenmäki, Anne, Tammi, Joni, Tornikoski, Merja

论文摘要

我们分析了2007年6月至2018年12月的Parsec尺度喷气运动学,其中一个$γ$ ray-ray Bright Blazars的样本每月监控,在VLBA-BU-Blazar计划下,在43 GHz的基线阵列大约每月进行监测。我们实现了一种新颖的线性拟合方法,以从22个类星体,13个Bl Lacertae对象和3个射电星系中得出521个不同的发射结的运动学。这些组件的明显速度从$ 0.01c $到$ 78c $,而开头的18.6%(“核心”除外)是准平台。运动结的五分之一表现出非焊接运动,沿着芯(投影)和减速的5 pc之内的射流加速。这些加速度主要发生在与准平台特征一致的位置。我们以具有统计学意义的运动计算273节的物理参数,包括其多普勒因子,洛伦兹因子和观看角。我们确定每个射流的这些参数的典型值,以及活性银河核的每个亚类的平均值。我们研究了在监测的十年中,每个射流的位置角度的变化。射电星系中准平台分量的位置的波动往往与射流平行,而在类星体和Bl lacertae对象的组件中没有看到方向偏好。我们发现,$γ$ - 射线的Blazars及其parsec尺寸的喷气性能之间的连接,而Blazars具有更明亮的43 GHz核心,通常在耀斑期间达到更高的$γ$ -Ray -Ray-ray Maxima。

We analyze the parsec-scale jet kinematics from 2007 June to 2018 December of a sample of $γ$-ray bright blazars monitored roughly monthly with the Very Long Baseline Array at 43 GHz under the VLBA-BU-BLAZAR program. We implement a novel piece-wise linear fitting method to derive the kinematics of 521 distinct emission knots from a total of 3705 total intensity images in 22 quasars, 13 BL Lacertae objects, and 3 radio galaxies. Apparent speeds of these components range from $0.01c$ to $78c$, and 18.6\% of knots (other than the "core") are quasi-stationary. One-fifth of moving knots exhibit non-ballistic motion, with acceleration along the jet within 5 pc of the core (projected) and deceleration farther out. These accelerations occur mainly at locations coincident with quasi-stationary features. We calculate the physical parameters of 273 knots with statistically significant motion, including their Doppler factors, Lorentz factors, and viewing angles. We determine the typical values of these parameters for each jet and the average for each subclass of active galactic nuclei. We investigate the variability of the position angle of each jet over the ten years of monitoring. The fluctuations in position of the quasi-stationary components in radio galaxies tend to be parallel to the jet, while no directional preference is seen in the components of quasars and BL Lacertae objects. We find a connection between $γ$-ray states of blazars and their parsec-scale jet properties, with blazars with brighter 43 GHz cores typically reaching higher $γ$-ray maxima during flares.

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