论文标题

活性银河核中的磁连接加热的电晕:精制圆盘模型和应用于宽带辐射

Magnetic-reconnection-heated corona in active galactic nuclei: refined disc-corona model and application to broad-band radiation

论文作者

Cheng, Huaqing, Liu, B. F., Liu, Jieying, Liu, Zhu, Qiao, Erlin, Yuan, Weimin

论文摘要

活性银河核(AGN)研究中的一个长期存在的问题是,如何加热电晕以产生X射线辐射,而不是由电晕内的粘性加热产生的X射线辐射。在本文中,我们对电晕进行了磁连接加热的详细研究,特别是研究了圆盘和电晕是如何与磁场搭配的,以及新兴光谱如何取决于AGN的基本参数。结果表明,从光学到X射线的宽带通道上的各种光谱形状和发光度可以从耦合的圆盘和电晕限制在有限的黑洞质量,积聚速率和磁场强度的范围内。 X射线发射相对于光学/紫外线(UV)的相对强度取决于盘中磁场的强度,该磁场的强度与增生速率一起决定了在电晕中运输和释放的吸积能的分数。然后,将此精制的圆盘模型应用于在X射线和光学/UV中同时观察到的20个明亮局部AGN的样品的宽带光谱分布(SED)。我们发现,通常可以合理地再现总体观察到的宽带SED,除了某些物体中相当硬的X射线光谱形状。如先前预测的AGN标准积聚盘所预测的辐射压力优势区域对于强X射线源消失,表明AGN吸积盘通常如观察到的确实是稳定的。我们的研究表明,涉及磁场的圆盘耦合模型是理解明亮AGN的宽带光谱的一种有前途的方法。

A long-standing question in active galactic nucleus (AGN) research is how the corona is heated up to produce X-ray radiation much stronger than that arising from the viscous heating within the corona. In this paper, we carry out detailed investigations of magnetic-reconnection heating to the corona, specifically, studying how the disc and corona are self-consistently coupled with the magnetic field, and how the emergent spectra depend on the fundamental parameters of AGN. It is shown that diverse spectral shapes and luminosities over a broad bandpass from optical to X-ray can be produced from the coupled disc and corona within a limited range of the black hole mass, accretion rate and magnetic field strength. The relative strength of X-ray emission with respect to optical/ultraviolet (UV) depends on the strength of the magnetic field in the disc, which, together with accretion rate, determines the fraction of accretion energy transported and released in the corona. This refined disc-corona model is then applied to reproduce the broad-band spectral energy distributions (SEDs) of a sample of 20 bright local AGNs observed simultaneously in X-ray and optical/UV. We find that, in general, the overall observed broad-band SEDs can be reasonably reproduced, except for rather hard X-ray spectral shapes in some objects. The radiation pressure-dominant region, as previously predicted for the standard accretion disc in AGN, disappears for strong X-ray sources, revealing that AGN accretion discs are indeed commonly stable as observed. Our study suggests the disc-corona coupling model involving magnetic fields to be a promising approach for understanding the broad-band spectra of bright AGNs.

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