论文标题
大规模进攻喷气机的3D流体动力模拟:无线电形态
3D Hydrodynamic Simulations of Large-Scale Precessing Jets: Radio Morphology
论文作者
论文摘要
长期以来,相对论喷气机表现出复杂形态的前景长期以来一直被假设。我们进行了一项3D流体动力学仿真研究,以改变每个模拟时间的进动锥角,喷射速度和弯数。使用无线电发射的代理,我们将视力范围不同的源头投射到观察者。我们发现,许多不同的进动组合会导致特征性的“ X”形源,这些源经常在无线电数据中观察到,并且某些进攻的喷气形态可能模仿重新启动无线电源的形态学特征。我们查看喷气机的规模范围从数十到数百千座,并开发了从叶轴识别已知的点对称性,曲率和喷气失调的已知进动指标,并表明,基于我们的模拟示例和非项目源的模拟示例,这些无线电源显示了这些指示器的任何一个指标具有98%的pressess source save save save save save。
The prospect of relativistic jets exhibiting complex morphologies as a consequence of geodetic precession has long been hypothesised. We have carried out a 3D hydrodynamics simulation study varying the precession cone angle, jet injection speed and number of turns per simulation time. Using proxies for the radio emission we project the sources with different inclinations to the line of sight to the observer. We find that a number of different precession combinations result in characteristic `X' shaped sources which are frequently observed in radio data, and some precessing jet morphologies may mimic the morphological signatures of restarting radio sources. We look at jets ranging in scale from tens to hundreds of kiloparsecs and develop tools for identifying known precession indicators of point symmetry, curvature and jet misalignment from the lobe axis and show that, based on our simulation sample of precessing and non-precessing jets, a radio source that displays any of these indicators has a 98% chance of being a precessing source.