论文标题

固定特征在喷气机中的研究:bl lacertae。 I.亚比尺度上的动力学和亮度不对称性

Studies of stationary features in jets: BL Lacertae. I. Dynamics and brightness asymmetry on sub-parsec scales

论文作者

Arshakian, T. G., Pushkarev, A. B., Lister, M. L., Savolainen, T.

论文摘要

语境。用很长的基线阵列(VLBA)对Bl lacertae的监测显示,在射流的最内向部分中显示了一个准平稳的无线电功能,无线电核心的MAS为0.26 MAS。在许多Blazars中找到了固定功能,但很少详细探讨它们。目标。我们旨在根据17年来基于VLBA监测(Subparsec-Scales)在17年内根据VLBA监测来研究射流在BL Lacertae中的运动学,动力学和亮度。方法。我们分析了最内向的准平台功能的位置不确定性和通量泄漏效应,并开发了统计工具,以区分固定功能和无线电芯的动作。我们构建了一个玩具模型,以模拟观察到的准平台分量的发射。结果。我们发现,准平稳分量的轨迹沿射流轴对准,可以将其解释为无线电芯位移的证据。核心和准平台分量的固有运动对固定组件的明显运动具有相称的贡献。在喷射稳定状态期间,核心移位显着影响固定成分的明显位移,这表明逆转旋转运动。准平台分量的时间尺度较低。在几年的时间尺度上,明显的平均速度是下层次的,约为0.15光速。我们发现,准平台成分的亮度曲线沿着射流轴不对称,并且这种效应保持不变,而不管时期如何。结论。准确的位置确定,高节奏的观测值以及对核心偏移的适当考虑对于测量准平台分量的轨迹和速度至关重要。 (Abbrev。)

Context. Monitoring of BL Lacertae at 15 GHz with the Very Long Baseline Array (VLBA) has revealed a quasi-stationary radio feature in the innermost part of the jet, at 0.26 mas from the radio core. Stationary features are found in many blazars, but they have rarely been explored in detail. Aims. We aim to study the kinematics, dynamics, and brightness of the quasi-stationary feature of the jet in BL Lacertae based on VLBA monitoring with submilliarcsecond resolution (subparsec-scales) over 17 years. Methods. We analysed position uncertainties and flux leakage effects of the innermost quasi-stationary feature and developed statistical tools to distinguish the motions of the stationary feature and the radio core. We constructed a toy model to simulate the observed emission of the quasi-stationary component. Results. We find that trajectories of the quasi-stationary component are aligned along the jet axis, which can be interpreted as evidence of the displacements of the radio core. The intrinsic motions of the core and quasi-stationary component have a commensurate contribution to the apparent motion of the stationary component. During the jet-stable state, the core shift significantly influences the apparent displacements of the stationary component, which shows orbiting motion with reversals. The quasi-stationary component has low superluminal speeds on time scales of months. On time-scales of few years, the apparent mean speeds are subrelativistic, of about 0.15 the speed of light. We find that the brightness profile of the quasi-stationary component is asymmetric along and transverse to the jet axis, and this effect remains unchanged regardless of epoch. Conclusions. Accurate positional determination, a high cadence of observations, and a proper accounting for the core shift are crucial for the measurement of the trajectories and speeds of the quasi-stationary component. (abbrev.)

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