Lysak R L
School of Physics and Astronomy, Minnesota Institute for Astrophysics, University of Minnesota, Minneapolis, MN USA.
Rev Mod Plasma Phys. 2023;7(1):6. doi: 10.1007/s41614-022-00111-2. Epub 2023 Jan 7.
Shear mode Alfvén waves are the carriers of field-aligned currents in the auroral zones of Earth and other planets. These waves travel along the magnetic field lines, coupling the outer magnetosphere with the ionosphere. However, in ideal magnetohydrodynamic (MHD) theory, the shear mode Alfvén wave does not carry a parallel electric field that could accelerate auroral particles. This can be modified by including kinetic effects, which lead to a parallel electric field when the perpendicular wavelength becomes comparable to the electron inertial length or the ion acoustic gyroradius. These small perpendicular wavelengths can be formed by phase mixing, ionospheric feedback, or nonlinear effects. Kinetic Alfvén waves are further constrained by their interaction with the ionosphere, which acts as a reflector for these waves. In addition, the strong plasma gradients in the topside ionosphere form an effective resonator that leads to fluctuations on time scales of seconds. These rapidly changing parallel electric fields can lead to broadband acceleration of auroral electrons, often called the Alfvénic aurora. Such interactions do not only take place in Earth's magnetosphere, but have also been observed in Jupiter's magnetosphere by the Juno satellite.
剪切模阿尔文波是地球和其他行星极光区中与场向电流相关的波动载体。这些波沿着磁力线传播,将外磁层与电离层耦合起来。然而,在理想磁流体动力学(MHD)理论中,剪切模阿尔文波并不携带能加速极光粒子的平行电场。这一点可以通过考虑动力学效应来修正,当垂直波长与电子惯性长度或离子声回旋半径可比时,动力学效应会导致产生平行电场。这些小的垂直波长可由相位混合、电离层反馈或非线性效应形成。动力学阿尔文波还会因其与电离层的相互作用而受到进一步限制,电离层对这些波起到反射器的作用。此外,电离层顶层的强等离子体梯度形成了一个有效的谐振器,导致在数秒时间尺度上出现波动。这些快速变化的平行电场可导致极光电子的宽带加速,通常称为阿尔文极光。此类相互作用不仅发生在地球磁层,“朱诺”号卫星也在木星磁层中观测到了这种现象。