论文标题
超临界物质IRAS IRAS F11119+3257中的双面但显着的喷射
A two-sided but significantly beamed jet in the supercritical accretion quasar IRAS F11119+3257
论文作者
论文摘要
在X射线和光学方案中,高吸收的类星体非常发光。同时,它们倾向于变得安静,并且具有光学薄的无线电光谱。在已知的类星体中,IRAS F11119+3257是超临界源的来源,因为它具有高于爱丁顿限制的横冲光度,并且极强大的X射线外流。为了探究其无线电结构,我们研究了其无线电频谱在0.15和96.15 GHz之间,并在1.66和4.93 GHz的欧洲VLBI网络(EVN)进行了非常长的基线干涉量学(VLBI)观察。 1.66 GHz时的Deep EVN图像显示了两侧喷射,预计分离约为200 parsec,而高磁通密度比约为290。加上-1.31 +/- 0.02的最佳拟合值在光学上较薄的零件中为-1.31 +/- 0.02,我们推断出接近的飞机具有0.57次的固有速度。这是在已知的各种超级埃德丁顿积聚来源中的新记录,并且不太可能因辐射压力加速。我们提出了一个场景,其中IRA F11119+3257是一个不寻常的紧凑对称对象,其射流视角很小,无线电频谱在0.53 +/- 0.06 GHz峰值峰值峰值,主要是由于同步性自动吸收。
Highly accreting quasars are quite luminous in the X-ray and optical regimes. While, they tend to become radio quiet and have optically thin radio spectra. Among the known quasars, IRAS F11119+3257 is a supercritical accretion source because it has a bolometric luminosity above the Eddington limit and extremely powerful X-ray outflows. To probe its radio structure, we investigated its radio spectrum between 0.15 and 96.15 GHz and performed very-long-baseline interferometric (VLBI) observations with the European VLBI Network (EVN) at 1.66 and 4.93 GHz. The deep EVN image at 1.66 GHz shows a two-sided jet with a projected separation about two hundred parsec and a very high flux density ratio of about 290. Together with the best-fit value of the integrated spectral index of -1.31+/-0.02 in the optically thin part, we infer that the approaching jet has an intrinsic speed at least 0.57 times of the light speed. This is a new record among the known all kinds of super-Eddington accreting sources and unlikely accelerated by the radiation pressure. We propose a scenario in which IRAS F11119+3257 is an unusual compact symmetric object with a small jet viewing angle and a radio spectrum peaking at 0.53+/-0.06 GHz mainly due to the synchrotron self-absorption.