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Magnetic-tower jet solution for launching astrophysical jets - The formation of the first jets in the universe

机译:发射天体物理射流的磁力塔射流解决方案-宇宙中第一批射流的形成

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In spite of the large number of global three-dimensional (3-D) magnetohydrodynamic (MHD) simulations of accretion disks and astrophysical jets, which have been developed since 2000, the launching mechanisms of jets is somewhat controversial. Previous studies of jets have concentrated on the effect of the large-scale magnetic fields permeating accretion disks. However, the existence of such global magnetic fields is not evident in various astrophysical objects, and their origin is not well understood. Thus, we study the effect of small-scale magnetic fields confined within the accretion disk. We review our recent findings on the formation of jets in dynamo-active accretion disks by using 3-D MHD simulations. In our simulations, we found the emergence of accumulated azimuthal magnetic fields from the inner region of the disk (the so-called magnetic tower) and also the formation of a jet accelerated by the magnetic pressure of the tower. Our results indicate that the magnetic tower jet is one of the most promising mechanisms for launching jets from the magnetized accretion disk in various astrophysical objects. We will discuss the formation of cosmic jets in the context of the magnetic tower model.
机译:自2000年以来,尽管对吸积盘和天体物理射流进行了大量的全球三维(3-D)磁流体动力学(MHD)模拟,但射流的发射机理仍存在争议。射流的先前研究主要集中在渗透吸积盘的大型磁场的影响上。但是,在各种天体物体中这种全局磁场的存在并不明显,并且它们的起源还没有被很好地理解。因此,我们研究了限制在吸积盘内的小规模磁场的影响。我们通过使用3-D MHD模拟来回顾我们最近的关于在发电机主动吸积盘中形成射流的发现。在我们的模拟中,我们发现了来自磁盘内部区域(所谓的磁塔)的累积方位磁场的出现,以及由塔的磁压加速的射流的形成。我们的结果表明,磁塔射流是在各种天体物体中从磁化吸积盘发射射流的最有希望的机制之一。我们将在磁塔模型的背景下讨论宇宙射流的形成。

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