论文标题

在实验室实验中识别非轴对称模式,以搜索标准磁化不稳定性

Identification of a non-axisymmetric mode in laboratory experiments searching for standard magnetorotational instability

论文作者

Wang, Yin, Gilson, Erik P., Ebrahimi, Fatima, Goodman, Jeremy, Caspary, Kyle J., Winarto, Himawan W., Ji, Hantao

论文摘要

标准的磁化不稳定(SMRI)是天体物理磁盘湍流和快速吸收的有前途的机制。这是一种磁流失动力(MHD)的不稳定性,它破坏了流体动力学稳定的磁盘流动。由于其在实验室实验中的天文距离和严格要求的微观性质,SMRI自从提议以来一直尚未确认,尽管它的天体重要性。在这里,我们报告了修改的泰勒 - 库特实验中的非轴对称MHD不稳定性。为了搜索SMRI,沿着旋转的液态流动的旋转轴施加了一个均匀的磁场。不稳定性最初会呈指数增长,仅对于足够的流动剪切和中等磁场而变得突出。这些不稳定性条件在质上与SMRI一致,但在磁性雷诺数下,低于具有周期性轴向边界的线性分析的预测。然而,三维数值模拟重现了观察到的不稳定性,表明它是根据施加磁场修饰的主要轴对称流线性生长的。

The standard magnetorotational instability (SMRI) is a promising mechanism for turbulence and rapid accretion in astrophysical disks. It is a magnetohydrodynamic (MHD) instability that destabilizes otherwise hydrodynamically stable disk flow. Due to its microscopic nature at astronomical distances and stringent requirements in laboratory experiments, SMRI has remained unconfirmed since its proposal, despite its astrophysical importance. Here we report a nonaxisymmetric MHD instability in a modified Taylor-Couette experiment. To search for SMRI, a uniform magnetic field is imposed along the rotation axis of a swirling liquid-metal flow. The instability initially grows exponentially, becoming prominent only for sufficient flow shear and moderate magnetic field. These conditions for instability are qualitatively consistent with SMRI, but at magnetic Reynolds numbers below the predictions of linear analyses with periodic axial boundaries. Three-dimensional numerical simulations, however, reproduce the observed instability, indicating that it grows linearly from the primary axisymmetric flow modified by the applied magnetic field.

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