论文标题

AGN PARSEC规模喷气机中全球磁场的配置

Configuration of the global magnetic field in AGN parsec-scale jets

论文作者

Butuzova, Marina S., Pushkarev, Alexander B.

论文摘要

磁场在高度准直的银河核(AGN)的高度直接射流的现象中起着重要作用。相对论效应阻止了磁场方向直接重建,这是无线电图上横向向量向量的。我们通过对总和极化强度,极化程度和极化方向偏离局部射流轴的横向分布进行建模以及与观察数据的进一步比较来确定B场的拓扑。我们认为(i)具有不同扭曲角度的螺旋场; (ii)射流轴上的环形场被带有纵向场的护套包围。在后一种情况下,我们考虑了相对于脊柱的不同护套厚度。我们假设护套速度等于或小于脊柱的速度。对于一般情况,相对论效应已被考虑,在该情况下,射流和径向方向的轴和速度向量不一致。我们的模拟重现了parsec尺度AGN喷气机中观察到的极化特性的横向曲线的主要特征。发现极化特性的模型横向分布形状受到流出的运动学和几何参数的强烈影响。我们为在无线电图上揭示的三个具有不同但典型的极化模式的AGN证明了这一点。对于这些对象,我们确定了模型参数,该参数提供了与从观察值获得的理论概况的定性对应关系,这表明B场在PARSEC尺度上强烈排序。

The magnetic field plays a significant role in the phenomenon of highly collimated jets of active galactic nuclei (AGN). Relativistic effects prevent the direct reconstruction of the magnetic field direction as transverse to electric vectors on radio maps. We determined the topology of the B-field by modeling the transverse distributions of the total and linearly polarized intensity, polarization degree, and deviation of the polarization direction from the local jet axis and by further comparison with observational data. We consider (i) a helical field with a different twist angle; (ii) a toroidal field on the jet axis surrounded by a sheath with a longitudinal field. In the latter scenario, we consider different sheath thickness relative to the spine. We assumed the sheath velocity is equal to or less than that of the spine. The relativistic effects have been considered for a general case, under which the axis and velocity vector of the jet and radial directions do not coincide. Our simulations reproduce the main features of the observed transverse profiles of polarization characteristics in parsec-scale AGN jets. The model transverse distribution shapes of the polarization properties are found to be strongly influenced by kinematic and geometric parameters of an outflow. We demonstrated it for three AGNs having different but typical polarization patterns revealed on radio maps. For each of these objects, we identified the model parameters, which provide a qualitative correspondence of theoretical profiles with those obtained from observations, indicating that the B-field is strongly ordered on parsec scales.

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