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Superluminal motion of a relativistic jet in the neutron-star merger GW170817

机译:中子星合并GW170817中相对论射流的超光速运动

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The binary neutron-star merger GW170817(1) was accompanied by radiation across the electromagnetic spectrum(2) and localized(2) to the galaxy NGC 4993 at a distance(3) of about 41 megaparsecs from Earth. The radio and X-ray afterglows of GW170817 exhibited delayed onset(4-7), a gradual increase' in the emission with time (proportional to t(0.8)) to a peak about 150 days after the merger event(9), followed by a relatively rapid decline(9,)(10). So far, various models have been proposed to explain the afterglow emission, including a choked-jet cocoon(4,8,11-13) and a successful-jet cocoon(4,8,11-18) (also called a structured jet). However, the observational data have remained inconclusive(10,15,19,20) as to whether GW170817 launched a successful relativistic jet. Here we report radio observations using very long-baseline interferometry. We find that the compact radio source associated with GW170817 exhibits superluminal apparent motion between 75 days and 230 days after the merger event. This measurement breaks the degeneracy between the choked- and successful-jet cocoon models and indicates that, although the early-time radio emission was powered by a wide-angle outflow(8) (a cocoon), the late-time emission was most probably dominated by an energetic and narrowly collimated jet (with an opening angle of less than five degrees) and observed from a viewing angle of about 20 degrees. The imaging of a collimated relativistic outflow emerging from GW170817 adds substantial weight to the evidence linking binary neutron-star mergers and short -gamma-my bursts.
机译:双星中子星合并GW170817(1)伴随电磁波辐射(2),并在离地球约41兆视差(3)处定位(2)到星系NGC 4993。 GW170817的放射和X射线余辉显示出延迟的发作(4-7),发射随时间逐渐增加(与t(0.8)成比例)达到合并事件后约150天的峰值(9),随后相对快速的下降(9,)(10)。到目前为止,已经提出了各种模型来解释余辉的排放,包括-流茧(4,8,11-13)和成功射流茧(4,8,11-18)(也称为结构射流)。 )。但是,关于GW170817是否发射成功的相对论射流,观测数据尚无定论(10、15、19、20)。在这里,我们报告使用非常长的基线干涉测量法进行的无线电观测。我们发现,与GW170817相关的紧凑型无线电源在合并事件发生后75天到230天之间显示出超光速的表观运动。这项测量打破了the缩和成功喷射的茧模型之间的退化,并表明,尽管早期的无线电发射是由广角流出物驱动的(8)(茧),但后期的发射最有可能由高能且准直的射流(开口角小于5度)主导,并从约20度的视角观察。 GW170817出现的准直相对论外流的影像大大增加了将双星中子星合并和短伽玛射线爆发联系起来的证据。

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