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THREE-DIMENSIONAL RELATIVISTIC MAGNETOHYDRODYNAMIC SIMULATIONS OF CURRENT-DRIVEN INSTABILITY. I. INSTABILITY OF A STATIC COLUMN

机译:电流驱动的不稳定性的三维相对论磁氢动力学模拟。一,静态列的不稳定性

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We have investigated the development of current-driven (CD) kink instability through three-dimensional relativistic magnetohydrodynamic simulations. A static force-free equilibrium helical magnetic configuration is considered in order to study the influence of the initial configuration on the linear and nonlinear evolution of the instability. We found that the initial configuration is strongly distorted but not disrupted by the kink instability. The instability develops as predicted by linear theory. In the nonlinear regime, the kink amplitude continues to increase up to the terminal simulation time, albeit at different rates, for all but one simulation. The growth rate and nonlinear evolution of the CD kink instability depend moderately on the density profile and strongly on the magnetic pitch profile. The growth rate of the kink mode is reduced in the linear regime by an increase in the magnetic pitch with radius and reaches the nonlinear regime at a later time than the case with constant helical pitch. On the other hand, the growth rate of the kink mode is increased in the linear regime by a decrease in the magnetic pitch with radius and reaches the nonlinear regime sooner than the case with constant magnetic pitch. Kink amplitude growth in the nonlinear regime for decreasing magnetic pitch leads to a slender helically twisted column wrapped by magnetic field. On the other hand, kink amplitude growth in the nonlinear regime nearly ceases for increasing magnetic pitch.
机译:我们已经通过三维相对论磁流体动力学仿真研究了电流驱动(CD)扭结不稳定性的发展。为了研究初始配置对不稳定性的线性和非线性演化的影响,考虑了无静力的平衡螺旋磁配置。我们发现初始配置会严重扭曲,但不会被扭结不稳定性所破坏。不稳定性如线性理论所预测的那样发展。在非线性状态下,除了一次仿真外,所有终端的扭结幅度都会不断增加,直到最终仿真时间为止,尽管速率不同。 CD扭结不稳定性的增长率和非线性演化在一定程度上取决于密度分布,而在很大程度上取决于磁距分布。弯曲模式的增长率在线性状态下会随着磁距的增加而减小,并且比具有恒定螺距的情况要晚一些。另一方面,扭折模式的增长率在线性状态下通过随着半径减小磁距而增加,并且比在恒定磁距情况下更快地到达非线性状态。在非线性状态中用于减小磁距的扭结幅度增长导致细长的螺旋扭曲柱被磁场包裹。另一方面,非线性区域中的扭结幅度增长几乎停止以增加磁距。

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