论文标题

通过X射线混响映射在活跃星系中的动态黑洞电晕

A dynamic black hole corona in an active galaxy through X-ray reverberation mapping

论文作者

Alston, William N., Fabian, Andrew C., Kara, Erin, Parker, Michael L., Dovciak, Michal, Pinto, Ciro, Jiang, Jiachen, Middleton, Matthew J., Miniutti, Giovanni, Walton, Dominic J., Wilkins, Dan R., Buisson, Douglas J. K., Caballero-Garcia, Maria D., Cackett, Edward M., De Marco, Barbara, Gallo, Luigi C., Lohfink, Anne M., Reynolds, Chris S., Uttley, Phil, Young, Andrew J., Zogbhi, Abderahmen

论文摘要

假定X射线混响回声是在积分超级质量黑洞周围在强烈扭曲的时空中产生的。该信号使我们能够在空间上绘制内积流的几何形状 - 一个尚未通过任何望远镜在空间上解析的区域 - 并提供了黑洞质量和自旋的直接度量。混响时间尺度是由从热X射线电晕的直接发射与从积聚盘内边缘的重新加工发射之间的光线旅行路径设定的。然而,黑洞质量,内盘半径和圆盘上方的电动电晕高度之间的混响信号存在固有的变性。在这里,我们使用对高度变化的活动星系,IRAS 13224-3809的长X射线观察,跟踪混响信号,因为系统在一天的时间尺度上演变。随着所有相对论效应的包含,建模表明,X射线电晕的高度随着发光度的增加而增加,从而提供了内部吸积区域的动态视图。这种同时建模使我们能够打破固有的变性,并获得基于黑洞的质量和旋转的独立计时估计。黑洞质量的不确定性与领先的光学混响方法相当,使X射线混响成为有力的技术,尤其是对于具有低光学变异性的来源而言。

X-ray reverberation echoes are assumed to be produced in the strongly distorted spacetime around accreting supermassive black holes. This signal allows us to spatially map the geometry of the inner accretion flow - a region which cannot yet be spatially resolved by any telescope - and provides a direct measure of the black hole mass and spin. The reverberation timescale is set by the light travel path between the direct emission from a hot X-ray corona and the reprocessed emission from the inner edge of the accretion disc. However, there is an inherent degeneracy in the reverberation signal between black hole mass, inner disc radius and height of the illuminating corona above the disc. Here, we use a long X-ray observation of the highly-variable active galaxy, IRAS 13224-3809, to track the reverberation signal as the system evolves on timescales of a day. With the inclusion of all the relativistic effects, modelling reveals that the height of the X-ray corona increases with increasing luminosity, providing a dynamic view of the inner accretion region. This simultaneous modelling allows us to break the inherent degeneracies and obtain an independent timing-based estimate for the mass and spin of the black hole. The uncertainty on black hole mass is comparable to the leading optical reverberation method, making X-ray reverberation a powerful technique, particularly for sources with low optical variability.

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