论文标题

来自黑洞积聚系统的情节喷气机和相关耀斑的形成

Formation of episodic jets and associated flares from black hole accretion systems

论文作者

Cemeljic, Miljenko, Yang, Hai, Yuan, Feng, Shang, Hsien

论文摘要

斑点(情节喷射)的情节弹出在黑洞源中广泛观察到,通常与耀斑有关。在本文中,通过对增生流的三维一般相对性磁流失动力学模拟进行进行和分析,我们研究了它们的物理机制。我们发现磁重新连接发生在积聚流中,这可能是由于湍流运动和吸积流的差异旋转,从而导致弹性和磁通绳的形成。发现在10-15重力半径内形成的通量绳子主要保持在吸积流中,而在此半径以外形成的通量绳索被磁力向外弹出并形成发作的喷气机。这些结果证实了Yuan等人(2009)中提出的基本情况。此外,我们的模拟发现,弹出斑点的预测速度与SGR A*,M81和M87的观察值保持良好。发现整个过程是按周期性发生的,其周期是形成通量绳的半径处的轨道时间。预测的耀斑和弹出周期与从sgr a*,m87和PKS 1510-089的光曲线或图像中发现的时期一致。讨论了在原始积聚系统中的可能应用。

Episodic ejections of blobs (episodic jets) are widely observed in black hole sources and usually associated with flares. In this paper, by performing and analyzing three dimensional general relativity magnetohydrodynamical numerical simulations of accretion flows, we investigate their physical mechanisms. We find that magnetic reconnection occurs in the accretion flow, likely due to the turbulent motion and differential rotation of the accretion flow, resulting in flares and formation of flux ropes. Flux ropes formed inside of 10-15 gravitational radii are found to mainly stay within the accretion flow, while flux ropes formed beyond this radius are ejected outward by magnetic forces and form the episodic jets. These results confirm the basic scenario proposed in Yuan et al.(2009). Moreover, our simulations find that the predicted velocity of the ejected blobs is in good consistency with observations of Sgr A*, M81, and M87. The whole processes are found to occur quasi-periodically, with the period being the orbital time at the radius where the flux rope is formed. The predicted period of flares and ejections is consistent with those found from the light curves or image of Sgr A*, M87, and PKS 1510-089. The possible applications to protostellar accretion systems are discussed.

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