论文标题
Alfven Wave碰撞开始对Alfvénic湍流的启动:一项数值研究
Initiation of Alfvénic turbulence by Alfven wave collisions: A numerical study
论文作者
论文摘要
在压缩磁流失动力学(MHD)的框架中,我们数字研究了通常接受的假定,即Alfvénic湍流是通过反向传播的Alfvén波(AWS)之间的碰撞产生的。在低β太阳能电晕和内部太阳风的典型条件下,我们在三维仿真框中启动了两个反传播AWS,并分析了AW AW碰撞之前和之后产生的扰动的极化和光谱特性。观察到的后粉碎扰动具有不同的极化和跨场尺度,而原始波则支持直接湍流级联反应的理论场景。然而,与理论期望相反,在满足不压缩MHD的经典临界平衡的尺度上,光谱传输被强烈抑制。取而代之的是,可以通过碰撞垂直尺度明显较短的AWS来建立修改的临界平衡。我们讨论了这些影响对压缩等离子体的湍流动力学和湍流加热的后果。特别是,如果环路子结构的特征宽度比环路宽度小十倍以上,则可以通过强湍流级联反环加热太阳能环路。 AW碰撞的新属性必须纳入AW湍流和相关应用的理论模型中。
In the framework of compressional magnetohydrodynamics (MHD), we numerically studied the commonly accepted presumption that the Alfvénic turbulence is generated by the collisions between counter-propagating Alfvén waves (AWs). In the conditions typical for the low-beta solar corona and inner solar wind, we launched two counter-propagating AWs in the three-dimensional simulation box and analyzed polarization and spectral properties of perturbations generated before and after AW collisions. The observed post-collisional perturbations have different polarizations and smaller cross-field scales than the original waves, which supports theoretical scenarios with direct turbulent cascades. However, contrary to theoretical expectations, the spectral transport is strongly suppressed at the scales satisfying the classic critical balance of incompressional MHD. Instead, a modified critical balance can be established by colliding AWs with significantly shorter perpendicular scales. We discuss consequences of these effects for the turbulence dynamics and turbulent heating of compressional plasmas. In particular, solar coronal loops can be heated by the strong turbulent cascade if the characteristic widths of the loop substructures are more than ten times smaller than the loop width. The revealed new properties of AW collisions have to be incorporated in the theoretical models of AW turbulence and related applications.