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Nonlinear Decay of Alfvén Waves Driven by Interplaying Two- and Three-dimensional Nonlinear Interactions

机译:相互作用的二维和三维非线性相互作用驱动Alfvén波的非线性衰减

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We study the decay of Alfvén waves in the solar wind, accounting for the joint operation of two-dimensional (2D) scalar and three-dimensional (3D) vector nonlinear interactions between Alfvén and slow waves. These interactions have previously been studied separately in long- and short-wavelength limits where they lead to 2D scalar and 3D vector decays, correspondingly. The joined action of the scalar and vector interactions shifts the transition between 2D and 3D decays to significantly smaller wavenumbers than was predicted by Zhao et al. who compared separate scalar and vector decays. In application to the broadband Alfvén waves in the solar wind, this means that the vector nonlinear coupling dominates in the extended wavenumber range 5?×?10?4??ρ i k 0⊥??1, where the decay is essentially 3D and nonlocal, generating product Alfvén and slow waves around the ion gyroscale. Here ρ i is the ion gyroradius, and k 0⊥ is the pump Alfvén wavenumber. It appears that, except for the smallest wavenumbers at and below in Channel I, the nonlinear decay of magnetohydrodynamic Alfvén waves propagating from the Sun is nonlocal and cannot generate counter-propagating Alfvén waves with similar scales needed for the turbulent cascade. Evaluation of the nonlinear frequency shift shows that product Alfvén waves can still be approximately described as normal Alfvénic eigenmodes. On the contrary, nonlinearly driven slow waves deviate considerably from normal modes and are therefore difficult to identify on the basis of their phase velocities and/or polarization.
机译:我们研究了Alfvén波在太阳风中的衰减,这解释了Alfvén与慢波之间的二维(2D)标量和三维(3D)向量非线性相互作用的联合运算。先前已分别在长波长和短波长范围内研究了这些相互作用,它们分别导致2D标量和3D矢量衰减。标量和矢量相互作用的联合作用使2D和3D衰减之间的过渡转变为比Zhao等人预测的要小得多的波数。他们比较了单独的标量和矢量衰减。在应用于太阳风中的宽带Alfvén波时,这意味着矢量非线性耦合在扩展的波数范围5?×?10?4 ??ρ?ik 0 ??? 1中占主导地位,其中衰减基本上是3D且非局部,产生产物Alfvén并在离子陀螺仪周围产生慢波。这里ρi是离子陀螺半径,而k0⊥是泵的Alfvén波数。看来,除了通道I处及下方的最小波数以外,从太阳传播的磁流体动力学Alfvén波的非线性衰减是非局部的,并且无法生成湍流级联所需的类似比例的反向传播Alfvén波。对非线性频移的评估表明,乘积Alfvén波仍然可以近似地描述为正常Alfvénic本征模。相反,非线性驱动的慢波大大偏离了正常模式,因此很难根据其相速度和/或极化进行识别。

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