Key Laboratory of Optical Astronomy, National Astronomical Observatories, Chinese Academy of Sciences, 20A Datun Road, Chaoyang District, Beijing 100012, China.
College of Astronomy and Space Sciences, University of Chinese Academy of Sciences, 19A Yuquan Road, Beijing 100049, China.
Nature. 2015 Dec 3;528(7580):108-10. doi: 10.1038/nature15751. Epub 2015 Nov 25.
The formation of relativistic jets by an accreting compact object is one of the fundamental mysteries of astrophysics. Although the theory is poorly understood, observations of relativistic jets from systems known as microquasars (compact binary stars) have led to a well established phenomenology. Relativistic jets are not expected to be produced by sources with soft or supersoft X-ray spectra, although two such systems are known to produce relatively low-velocity bipolar outflows. Here we report the optical spectra of an ultraluminous supersoft X-ray source (ULS) in the nearby galaxy M81 (M81 ULS-1; refs 9, 10). Unexpectedly, the spectra show blueshifted, broad Hα emission lines, characteristic of baryonic jets with relativistic speeds. These time-variable emission lines have projected velocities of about 17 per cent of the speed of light, and seem to be similar to those from the prototype microquasar SS 433 (refs 11, 12). Such relativistic jets are not expected to be launched from white dwarfs, and an origin from a black hole or a neutron star is hard to reconcile with the persistence of M81 ULS-1's soft X-rays. Thus the unexpected presence of relativistic jets in a ULS challenges canonical theories of jet formation, but might be explained by a long-speculated, supercritically accreting black hole with optically thick outflows.
吸积致密天体形成相对论性喷流是天体物理学基本奥秘之一。尽管该理论尚未得到很好的理解,但对被称为微类星体(致密双星)的系统中相对论性喷流的观测已导致了确立的现象学。尽管具有软或超软 X 射线谱的源预计不会产生相对论性喷流,但有两个这样的系统已知会产生相对低速度的双极外流。在这里,我们报告了在附近星系 M81 中的一个超亮软 X 射线源(ULS)(M81 ULS-1;参考文献 9,10)的光学光谱。出乎意料的是,光谱显示出蓝移的宽 Hα 发射线,这是具有相对论速度的重子喷流的特征。这些时变发射线的投影速度约为光速的 17%,并且似乎与原型微类星体 SS 433(参考文献 11,12)的发射线相似。这种相对论性喷流预计不会从白矮星中发射,而黑洞或中子星的起源很难与 M81 ULS-1 的软 X 射线的持续存在相协调。因此,ULS 中相对论性喷流的意外存在对喷流形成的规范理论提出了挑战,但可能通过长期推测的、具有光学厚外流的超临界吸积黑洞来解释。