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The current-driven kink instability in magnetically dominated relativistic jets

机译:电流驱动的扭结在磁性主导的相对论射流中的不稳定性

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We have investigated the development of current-driven (CD) kink instability in relativistic jets, via 3D relativistic magnetohydrodynamic simulations. For this purpose, a static force-free equilibrium helical magnetic configuration is considered in order to study its influence on the linear and nonlinear stages of the instability. We found that this configuration is strongly distorted but not disrupted by the CD kink instability. Both the linear growth and the nonlinear evolution of this in-stability depend moderately on the radial density profile but are strongly sensitive to the magnetic pitch profile. For decreasing magnetic pitch, kink amplitude growth leads, in the nonlinear regime, to a slender helically twisted column wrapped by magnetic field. Differently, for increasing magnetic pitch, the kink amplitude nearly saturates in the nonlinear regime. We have also investigated the influence of velocity shear on the linear and non-linear development of the instability. We found that helically distorted density structures propagate along the jet with a speed and a flow structure that are dependent on the location of the velocity shear relative to the characteristic radius of the helically twisted force-free magnetic field. At small radius, the plasma flows through the kink. The kink propagation speed increases with the velocity shear radius, and the kink becomes more em-bedded in the plasma flow. Larger velocity shear radius leads to slower linear growth, with a later transition to the nonlinear stage and a larger maximum amplitude than in the case of a static plasma column. However, when the velocity shear radius is much greater than the characteristic radius of the helical magnetic field, linear and non-linear developments become more similar to those of a static plasma column.
机译:我们已经调查了通过3D相对论磁流动正动力模拟在相对论喷射器中的电流驱动(CD)扭结不稳定的开发。为此目的,考虑一种静止的无力平衡螺旋磁性构造,以研究其对不稳定性的线性和非线性阶段的影响。我们发现这种配置强烈扭曲,但不受CD扭结不稳定的破坏。线性生长和这种稳定性的非线性演化既适中地取决于径向密度分布,但对磁性俯仰曲线非常敏感。为了将磁场减小,在非线性方案中,扭振幅度生长引线到由磁场包裹的细长螺旋扭曲柱。不同地,对于增加磁场,扭结幅度几乎饱和在非线性状态下。我们还研究了速度剪切对不稳定的线性和非线性开发的影响。我们发现,螺旋扭曲的密度结构沿着射流传播,速度和流动结构相对于螺旋扭曲的力磁场的特征半径取决于速度剪切的位置。在小半径下,等离子体流过扭结。扭结传播速度随速度剪切半径而增加,并且扭结在等离子体流中变得更加嵌入的Em-Bod。较大的速度剪切半径导致线性生长较慢,后来过渡到非线性阶段和比静态等离子体柱的情况更大的最大幅度。然而,当速度剪切半径远大于螺旋磁场的特征半径时,线性和非线性发育变得与静态等离子体柱的相似。

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