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BIMODALITY OF CIRCUMSTELLAR DISK EVOLUTION INDUCED BY THE HALL CURRENT

机译:霍尔电流引起的圆盘形演化的双态性

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The formation process of circumstellar disks is still controversial because of the interplay of complex physical processes that occurs during the gravitational collapse of prestellar cores. In this study, we investigate the effect of the Hall current term on the formation of the circumstellar disk using three-dimensional simulations. In our simulations, all non-ideal effects, as well as the radiation transfer, are considered. The size of the disk is significantly affected by a simple difference in the inherent properties of the prestellar core, namely whether the rotation vector and the magnetic field are parallel or anti-parallel. In the former case, only a very small disk (<1 AU) is formed. On the other hand, in the latter case, a massive and large (> 20 AU) disk is formed in the early phase of protostar formation. Since the parallel and anti-parallel properties do not readily change, we expect that the parallel and anti-parallel properties are also important in the subsequent disk evolution and the difference between the two cases is maintained or enhanced. This result suggests that the disk size distribution of the Class 0 young stellar objects is bimodal. Thus, the disk evolution can be categorized into two cases and we may call the parallel and anti-parallel systems. Ortho-disk and Para-disk, respectively. We also show that the anti-rotating envelopes against the disk rotation appear with a size of. 200 AU. We predict that the anti-rotating envelope will be found in the future observations.
机译:由于在星前岩心的重力坍塌过程中发生的复杂物理过程相互影响,因此,恒星盘的形成过程仍存在争议。在这项研究中,我们使用三维模拟研究霍尔电流项对星际盘形成的影响。在我们的仿真中,考虑了所有非理想效应以及辐射传递。圆盘的大小受星际核心固有特性的简单差异(即旋转矢量和磁场是平行还是反平行)的显着影响。在前一种情况下,仅形成一个很小的磁盘(<1 AU)。另一方面,在后一种情况下,在原恒星形成的早期阶段形成了一块大而大的(> 20 AU)圆盘。由于并行和反并行属性不容易改变,因此我们期望并行和反并行属性在随后的磁盘演变中也很重要,并且两种情况之间的差异得以保持或增强。该结果表明,0级年轻恒星对象的磁盘大小分布是双峰的。因此,磁盘演化可以分为两种情况,我们可以将其称为并行系统和反并行系统。分别是正交磁盘和辅助磁盘。我们还表明,防旋转包膜对磁盘旋转的大小为。 200 AU。我们预测在将来的观测中会发现防旋转包络线。

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