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Retrograde versus Prograde Models of Accreting Black Holes

机译:吸积黑洞的逆行与渐进模型

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摘要

There is a general consensus that magnetic fields, accretion disks, and rotating black holes are instrumental in the generation of the most powerful sources of energy in the known universe. Nonetheless, because magnetized accretion onto rotating black holes involves both the complications of nonlinear magnetohydrodynamics that currently cannot fully be treated numerically, and uncertainties about the origin of magnetic fields that at present are part of the input, the space of possible solutions remains less constrained. Consequently, the literature still bears witness to the proliferation of rather different black hole engine models. But the accumulated wealth of observational data is now sufficient to meaningfully distinguish between them. It is in this light that this critical paper compares the recent retrograde framework with standard “spin paradigm” prograde models.
机译:人们普遍认为,磁场,吸积盘和旋转的黑洞在已知宇宙中最强大的能源产生中起着重要作用。但是,由于在旋转的黑洞上磁化的积聚既涉及非线性磁流体动力学的复杂性,目前尚不能完全用数字来处理,而且涉及目前是输入的一部分的磁场起源的不确定性,因此,可能的解的空间受到的约束较少。因此,文献仍然见证了相当不同的黑洞引擎模型的泛滥。但是,观测数据的累积财富现在足以有意义地区分它们。鉴于此,这篇重要论文将最新的逆行框架与标准的“自旋范式”顺行模型进行了比较。

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