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A Magnetohydrodynamical Model for the Formation of Episodic Jets

机译:磁性流体动力学模型形成巨型射流

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Episodic ejection of plasma. blobs have been observed in many black hole systems. While steady, continuous jets are believed to be associated with large-scale open magnetic fields, what causes the episodic ejection of blobs remains unclear. By analogy with the coronal mass ejection on the Sun, we propose a magnetohydrodynamical model for episodic ejections from black holes associated with the closed magnetic fields in an accretion flow. Shear and turbulence of the accretion flow deform the field and result in the formation of a flux rope in the disk corona. Energy and helicity are accumulated and stored until a threshold is reached. The system then loses its equilibrium and the flux rope is thrust outward by the magnetic compression force in a catastrophic way. Our calculations show that for parameters appropriate for the black hole in our Galactic center, the plasmoid can attain relativistic speeds in about 35 minutes.
机译:血浆的集体喷射。在许多黑洞系统中观察到斑点。虽然稳定,但据信稳定,连续喷射与大规模的开放磁场相关,导致斑点的膨胀率仍然不清楚。通过对太阳的冠状质量喷射进行类比,我们提出了与闭合磁场相关的黑洞的磁性流体动力学模型,其在闭合磁场中的闭合磁场。剪切和湍流流量变形变形领域并导致磁盘电晕中的磁通绳的形成。能量和螺旋累积并储存,直到达到阈值。然后系统失去其平衡,并且磁通绳索以灾难性的方式向外推动。我们的计算表明,对于适用于我们银河系中心的黑洞的参数,疟原虫可以在约35分钟内获得相对论的速度。

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