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首页> 外文期刊>The Astrophysical journal >X-RAY FLUCTUATIONS FROM LOCALLY UNSTABLE ADVECTION-DOMINATED DISKS
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X-RAY FLUCTUATIONS FROM LOCALLY UNSTABLE ADVECTION-DOMINATED DISKS

机译:局域不稳定的磁盘的X射线波动

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The response of advection-dominated accretion disks to local disturbances is examined by one-dimensional numerical simulations. It is generally believed that advection-dominated disks are thermally stable. We, however, find that any disturbance added onto accretion flow at large radii does not decay so rapidly that it can move inward with roughly the free-fall velocity. Although disturbances continue to be present, the global disk structure will not be modified greatly. This can account for persistent hard X-ray emission with substantial variations observed in active galactic nuclei and stellar black hole candidates during the hard state. Moreover, when the disturbance reaches the innermost parts, an acoustic wave emerges, propagating outward as a shock wave. The resultant light variation is roughly (time) symmetric and is quite reminiscent of the observed X-ray shots of Cygnus X-1.
机译:通过一维数值模拟研究了以平流为主的吸积盘对局部扰动的响应。通常认为对流为主的盘是热稳定的。但是,我们发现,在较大半径上添加到吸积流上的任何扰动不会迅速衰减,以至于它可以以大约自由下落的速度向内移动。尽管继续存在干扰,但是全局磁盘结构将不会做很大的修改。这可以解释持续的硬X射线发射,在硬态期间在活动的银河核和恒星黑洞候选物中观察到很大的变化。此外,当干扰到达最内部时,会出现声波,并作为冲击波向外传播。产生的光变化大致(时间)对称,并且非常让人联想到天鹅座X-1的X射线照片。

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