论文标题

sgr a* flares的浆样模型与重力和钱德拉观察到

A Plasmoid Model for the Sgr A* Flares Observed with GRAVITY and Chandra

论文作者

Ball, David, Özel, Feryal, Christian, Pierre, Chan, Chi-Kwan, Psaltis, Dimitrios

论文摘要

银河中心黑洞SGR A*显示出显着的可变性和耀斑,并在亚毫米,红外和X射线波长中显示出。由于其在IR频段中的精致分辨率,重力实验首次在空间上解析了三种耀斑的位置,并表明在每个事件过程中,明亮的区域移动在椭圆形的轨迹中,但从黑洞接近,但从黑洞中偏移。我们提出了一个模型的模型,该模型在重新连接事件和冠状区域围绕黑洞的冠状区域形成,以解释这些观察结果。我们利用一般性的辐射转移计算,包括有限的光线行进时间,浆液运动,颗粒加速和同步加速器冷却的影响,并在耀斑灯弯曲中获得丰富的结构。该模型自然可以说明通过重力实验观察到的明亮区域的运动以及质心运动中心和黑洞位置之间的偏移。这也解释了为什么有些耀斑可能会双峰,而另一些耀斑只有一个峰,并且发现了灯弯曲中的结构与耀斑的位置之间的相关性。最后,我们从SGR a*的内部积聚流中对未来对耀斑的观察进行预测,该耀斑将提供该模型的测试。

The Galactic Center black hole Sgr A* shows significant variability and flares in the submillimeter, infrared, and X-ray wavelengths. Owing to its exquisite resolution in the IR bands, the GRAVITY experiment for the first time spatially resolved the locations of three flares and showed that a bright region moves in ellipse-like trajectories close to but offset from the black hole over the course of each event. We present a model for plasmoids that form during reconnection events and orbit in the coronal region around a black hole to explain these observations. We utilize general-relativistic radiative transfer calculations that include effects from finite light travel time, plasmoid motion, particle acceleration, and synchrotron cooling and obtain a rich structure in the flare lightcurves. This model can naturally account for the observed motion of the bright regions observed by the GRAVITY experiment and the offset between the center of the centroid motion and the position of the black hole. It also explains why some flares may be double-peaked while others have only a single peak and uncovers a correlation between the structure in the lightcurve and the location of the flare. Finally, we make predictions for future observations of flares from the inner accretion flow of Sgr A* that will provide a test of this model.

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