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THE 1998 OUTBURST OF XTE J1550-564: A MODEL BASED ON MULTIWAVELENGTH OBSERVATIONS

机译:XTE J1550-564 1998年的爆发:基于多波长观测的模型

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摘要

The 1998 September outburst of the black hole X-ray binary XTE J1550-564 was monitored at X-ray, optical, and radio wavelengths. We divide the outburst sequence into five phases and discuss their multiwavelength properties. The outburst starts with a hard X-ray spike, while the soft X-ray flux rises with a longer timescale. We suggest that the onset of the outburst is determined by an increased mass transfer rate from the companion star, but the outburst morphology is determined by the distribution of specific angular momentum in the accreting matter. The companion in XTE J1550 -564 is likely to be an active magnetic star, with a surface field strong enough to influence the dynamics of mass transfer. We suggest that its magnetic field can create a magnetic bag capable of confining gas inside the Roche lobe of the primary. The impulsive rise in the hard X-rays is explained by the inflow of material with low angular momentum onto the black hole, on a free-fall timescale, when the magnetic confinement breaks down. At the same time, high angular momentum matter, transferred via ordinary Roche lobe overflow, is responsible for the formation of a disk.
机译:1998年9月黑洞X射线二进制XTE J1550-564的爆发是在X射线,光学和无线电波长下进行的。我们将爆发序列分为五个阶段,并讨论它们的多波长特性。爆发以硬X射线尖峰开始,而软X射线通量以较长的时间尺度上升。我们认为,爆发的发生取决于伴星的传质速率,而爆发的形态则取决于吸积物质中特定角动量的分布。 XTE J1550 -564中的伴星可能是一颗活跃的磁星,其表面场强到足以影响质量传递动力学的程度。我们建议它的磁场可以创建一个能够将气体限制在初级罗氏瓣内的磁性袋。硬X射线的脉冲上升是由低角动量的物质在磁约束破裂时以自由落下的时间尺度流入黑洞所解释的。同时,通过普通的罗氏波瓣溢流传递的高角动量物质负责形成盘。

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