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Influence of Cosmic Repulsion and Magnetic Fields on Accretion Disks Rotating around Kerr Black Holes

机译:宇宙排斥和磁场对克尔黑洞旋转旋转磁盘的影响

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We present a review of the influence of cosmic repulsion and external magnetic fields on accretion disks rotating around rotating black holes and on jets associated with these rotating configurations. We consider both geometrically thin and thick disks. We show that the vacuum energy represented by the relic cosmological constant strongly limits extension of the accretion disks that is for supermassive black holes comparable to extension of largest galaxies, and supports collimation of jets at large distances from the black hole. We further demonstrate that an external magnetic field crucially influences the fate of ionized Keplerian disks causing creation of winds and jets, enabling simultaneously acceleration of ultra-high energy particles with energy up to 10 21 eV around supermassive black holes with M ~ 10 10 M ⊙ surrounded by sufficiently strong magnetic field with B ~ 10 4 G. We also show that the external magnetic fields enable existence of “levitating” off-equatorial clouds or tori, along with the standard equatorial toroidal structures, if these carry a non-vanishing, appropriately distributed electric charge.
机译:我们介绍了宇宙排斥和外部磁场对旋转黑洞旋转旋转和与这些旋转配置相关的喷射器的影响的影响。我们考虑几何薄且厚厚的磁盘。我们表明,由遗物宇宙恒定表示的真空能量强烈限制延伸的叠加盘,该磁盘的延伸是用于延伸的最大星系的延伸,并且支持从黑洞的大距离的喷射准直。我们进一步证明,外部磁场关键是影响导致风和喷射器的电离的孔板磁盘的命运,使得能量高达10 21e的能量加速超大的黑洞,其与M〜10 10 m⊙周围的高度高能量颗粒。通过B〜10 4 G的足够强的磁场包围。我们还表明外部磁场能够存在“悬浮”脱离赤道云或扭矩,以及标准赤道环形结构,如果这些携带非消失,适当分布的电荷。

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