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A dark jet dominates the power output of the stellar black hole Cygnus X-1

机译:暗流控制着恒星黑洞天鹅座X-1的功率输出

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摘要

Accreting black holes are thought to emit the bulk of their power in the X-ray band by releasing the gravitational potential energy of the infalling matter. At the same time, they are capable of producing highly collimated jets of energy and particles flowing out of the system with relativistic velocities. Here we show that the 10 solar mass black hole in the X-ray binary Cygnus X-1 is surrounded by a large-scale (about 5 pc in diameter) ring-like structure that appears to be inflated by the inner radio jet. We estimate that in order to sustain the observed emission of the ring, the jet of Cygnus X-1 has to carry a kinetic power that can be as high as the bolometric X-ray luminosity of the binary system. This result may imply that low-luminosity stellar mass black holes as a whole dissipate the bulk of the liberated accretion power in the form of `dark', radiatively inefficient relativistic outflows, rather than locally in the X-ray emitting inflow.
机译:人们认为,积​​聚的黑洞会通过释放下落物质的重力势能,在X射线带中释放出大部分能量。同时,它们能够以相对论的速度产生高度准直的能量和粒子射流。在这里,我们显示了X射线二元天鹅座X-1中的10个太阳质量黑洞被似乎由内部射流膨胀的大型(直径约5 pc)环形结构包围。我们估计,为了维持观察到的环发射,天鹅座X-1的射流必须具有动能,该动能可以高达二元系统的辐射X射线发光度。该结果可能暗示,低光度的恒星质量黑洞总体上以“暗”(辐射效率低的相对论外流)形式散发了大部分释放的增生力,而不是局部地散布在X射线发射流中。

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