论文标题
J1048+7143的Multimessenger图片
Multimessenger Picture of J1048+7143
论文作者
论文摘要
我们绘制了J1048+7143的多通文图片,这是一款平坦的无线电类星体,已知在$γ$ -Ray rengime中显示准周期性振荡。我们生成了该来源以上168 MeV的自适应式费米大面积望远镜光曲线,以找到三个主要的$γ$ - 射线燃料,从而使所有三个耀斑都由两个两架尖锐的次级弹药组成。基于无线电干涉成像数据,我们发现KPC规模的喷气机针对西部,而我们对$ 8.6 $ -GHz的分析非常长的基线干涉仪数据,主要是用非常长的基线阵列(主要是在两个PC尺度上)签名的两个PC尺度签名,一个指向向东,一个指向向南。我们建议KPC和PC规模的喷气机的错位是喷气进取的签名。我们还分析了使用Nanshan(UR)和Ratan-600单盘射线望远镜拍摄的J1048+7143的$ 5 $ -GHZ总通量密度曲线,并找到了两个完整的无线电耀斑,略微落后于$γ$ - 雷射线。我们将$γ$ ray耀斑的时机建模为超级摩托黑洞二进制中的自旋轨道进动的签名,并发现二进制可以在接下来的$ \ sim 60-80 $年中合并。我们表明,PULSAR时正时阵列和计划的激光干涉仪空间天线缺乏灵敏度和频率覆盖范围,无法检测J1048中的假设超质量黑洞二进制二进制$+$ 7143。我们认为,与J1048+7143相似的来源的识别起着揭示遥远宇宙定期高能源的关键作用。
We draw the multimessenger picture of J1048+7143, a flat-spectrum radio quasar known to show quasi-periodic oscillations in the $γ$-ray regime. We generate the adaptively-binned Fermi Large Area Telescope light curve of this source above 168 MeV to find three major $γ$-ray flares of the source, such that all three flares consist of two-two sharp sub-flares. Based on radio interferometric imaging data taken with the Very Large Array, we find that the kpc-scale jet is directed towards west, while our analysis of $8.6$-GHz very long baseline interferometry data, mostly taken with the Very Long Baseline Array, revealed signatures of two pc-scale jets, one pointing towards east, one pointing towards south. We suggest that the misalignment of the kpc- and pc-scale jets is a revealing signature of jet precession. We also analyze the $5$-GHz total flux density curve of J1048+7143 taken with the Nanshan(Ur) and RATAN-600 single dish radio telescopes and find two complete radio flares, slightly lagging behind the $γ$-ray flares. We model the timing of $γ$-ray flares as signature of the spin-orbit precession in a supermassive black hole binary, and find that the binary could merge in the next $\sim 60-80$ years. We show that both the Pulsar Timing Arrays and the planned Laser Interferometer Space Antenna lack sensitivity and frequency coverage to detect the hypothetical supermassive black hole binary in J1048$+$7143. We argue that the identification of sources similar to J1048+7143 plays a key role to reveal periodic high-energy sources in the distant Universe.