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An ultra-relativistic outflow from a neutron star accreting gas from a companion

机译:中子星的超相对论外流从同伴身上吸收气体

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Collimated relativistic outflows―also known as jets―are amongst the most energetic phenomena in the Universe. They are associated with supermassive black holes in distant active galactic nuclei, accreting stellar-mass black holes and neutron stars in binary systems and are believed to be responsible for γ-ray bursts. The physics of these jets, however, remains something of a mystery in that their bulk velocities, compositions and energetics remain poorly determined. Here we report the discovery of an ultra-relativistic outflow from a neutron star accreting gas within a binary stellar system. The velocity of the outflow is comparable to the fastest-moving flows observed from active galactic nuclei, and its strength is modulated by the rate of accretion of material onto the neutron star. Shocks are energized further downstream in the flow, which are themselves moving at mildly relativistic bulk velocities and are the sites of the observed synchrotron emission from the jet. We conclude that the generation of highly relativistic outflows does not require properties that are unique to black holes, such as an event horizon.
机译:准直的相对论外流(也称为射流)是宇宙中最活跃的现象之一。它们与遥远活动星系核中的超大质量黑洞有关,并在双星系统中积聚恒星质量黑洞和中子星,并被认为是造成γ射线爆发的原因。但是,这些喷气机的物理性质仍然是个谜,因为它们的整体速度,组成和能量学原理仍然很难确定。在这里,我们报道了从中子星中吸收恒星的双星系统中的超相对论流出的发现。流出的速度可与从活跃银河核观察到的运动最快的流动相媲美,其强度受物质在中子星上的积聚速率的调节。冲击在流的下游进一步激发,它们本身以相对论的整体速度运动,并且是从喷嘴观察到的同步加速器发射的地点。我们得出结论,产生高度相对论性流出并不需要黑洞特有的属性,例如事件范围。

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