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首页> 外文期刊>The Astrophysical journal >RADIATION PRESSURE-DRIVEN MAGNETIC DISK WINDS IN BROAD ABSORPTION LINE QUASI-STELLAR OBJECTS
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RADIATION PRESSURE-DRIVEN MAGNETIC DISK WINDS IN BROAD ABSORPTION LINE QUASI-STELLAR OBJECTS

机译:宽吸收线准恒星中的辐射压力驱动的磁碟风

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摘要

We explore a model in which QSO broad absorption lines (BALs) are formed in a radiation pressure-driven wind emerging from a magnetized accretion disk. The magnetic field threading the disk material is dragged by the flow and is compressed by the radiation pressure until it is dynamically important and strong enough to contribute to the confinement of the BAL clouds. We construct a simple self-similar model for such radiatively driven magnetized disk winds, in order to explore their properties. It is found that solutions exist for which the entire magnetized flow is confined to a thin wedge over the surface of the disk. For reasonable values of the mass-loss rate, a typical magnetic field strength such that the magnetic pressure is comparable to the inferred gas pressure in BAL clouds, and a moderate amount of internal soft X-ray absorption, we find that the opening angle of the flow is approximately 0.1 rad, in good agreement with the observed covering factor of the broad absorption line region.
机译:我们探索了一个模型,其中在从磁化吸积盘中出现的辐射压力驱动的风中形成了QSO宽吸收线(BAL)。穿过磁盘材料的磁场被流动拖曳,并受到辐射压力的压缩,直到它具有动态重要性和足够的强度以限制BAL云为止。我们为这种辐射驱动的磁化磁盘风构建了一个简单的自相似模型,以探索其特性。发现存在解决方案,对于该解决方案,整个磁化流被限制在盘的表面上的薄楔形上。对于合理的质量损失率值,典型的磁场强度(使磁压可与BAL云中的推定气压相当)以及适度的内部软X射线吸收,我们发现流量约为0.1 rad,与宽吸收线区域的观测覆盖率非常吻合。

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