论文标题
差异旋转磁盘中的非本地磁源性不稳定
A non-local magneto-curvature instability in a differentially rotating disk
论文作者
论文摘要
在包含垂直或方位角磁场的差异旋转的开普勒磁盘中,全局模式与非轴对称扰动不稳定。在未分层的圆柱磁盘模型中,使用全局特征值稳定性分析和线性全局初始值模拟,证明这种不稳定性占主导地位,在强磁场上,本地标准MRI变得稳定。与集中在高流动剪切区域的标准MRI模式不同,这些不同的全局模式(具有低方位模式数字)在全局域中扩展,并且是AlfvénContinuum驱动的不稳定模式。由于其模式结构和对MRI的相对优势固有地由全局空间曲率以及在存在磁场的存在下的流剪切所确定,因此我们称其为磁曲面(磁性空间曲面)的不稳定。与线性分析一致,随着非线性模拟中的田间强度的提高,从MRI驱动的湍流转变为以全局非轴对称模式为主导的状态。因此,这种全球不稳定可能是比本地模型预测的更高磁场积聚磁盘中非线性传输的来源。
A global mode is shown to be unstable to non-axisymmetric perturbations in a differentially rotating Keplerian disk containing either vertical or azimuthal magnetic fields. In an unstratified cylindrical disk model, using both global eigenvalue stability analysis and linear global initial-value simulations, it is demonstrated that this instability dominates at strong magnetic field where local standard MRI becomes stable. Unlike the standard MRI mode, which is concentrated in the high flow shear region, these distinct global modes (with low azimuthal mode numbers) are extended in the global domain and are Alfvén continuum driven unstable modes. As its mode structure and relative dominance over MRI is inherently determined by the global spatial curvature as well as the flow shear in the presence of magnetic field, we call it the magneto-curvature (magneto-spatial-curvature) instability. Consistent with the linear analysis, as the field strength is increased in the nonlinear simulations, a transition from a MRI-driven turbulence to a state dominated by global non-axisymmetric modes is obtained. This global instability could therefore be a source of nonlinear transport in accretion disks at higher magnetic field than predicted by local models.