论文标题

惠斯勒在准垂直超临界冲击脚下

Whistler Waves in the foot of Quasi-Perpendicular Super-Critical Shocks

论文作者

Lalti, Ahmad, Khotyaintsev, Yuri, Graham, Daniel B., Vaivads, Andris, Steinvall, Konrad, Russell, Christopher T.

论文摘要

人们认为惠斯勒的波浪在无碰撞冲击的动态中起着至关重要的作用。我们使用磁层多尺度(MMS)航天器来研究较低的杂种频率周围的惠斯勒波,在11次准垂直的超临界冲击上游。我们应用4-SPACECRAFT时序方法来明确确定Whistler Waves的Wave Vector $ \ Mathbf {K} $。我们发现波浪倾斜到背景磁场,波正常角度在$ 20^{\ circ} $和$ 42^{\ circ} $之间,这是一个接近离子惯性长度的波长。我们还发现,$ \ mathbf {k} $主要是在与磁场的同一平面上,而对冲击的态度正常。通过将$ \ mathbf {k} $的精确知识与3D离子速度分布的高分辨率测量相结合,我们表明,反射的离子束与波浪产生了共鸣,从而为反射离子和观察到的Whistlers之间的波颗粒相互作用提供了可能性。模仿观察到的分布的系统的线性稳定性分析表明,这种系统可以产生观察到的波。

Whistler waves are thought to play an essential role in the dynamics of collisionless shocks. We use the magnetospheric multiscale (MMS) spacecraft to study whistler waves around the lower hybrid frequency, upstream of 11 quasi-perpendicular super-critical shocks. We apply the 4-spacecraft timing method to unambiguously determine the wave vector $\mathbf{k}$ of whistler waves. We find that the waves are oblique to the background magnetic field with a wave-normal angle between $20^{\circ}$ and $42^{\circ}$, a wavelength around 100 km which is close to the ion inertial length. We also find that $\mathbf{k}$ is predominantly in the same plane as the magnetic field and the normal to the shock. By combining this precise knowledge of $\mathbf{k}$ with high-resolution measurements of the 3D ion velocity distribution we show that a reflected ion beam is in resonance with the waves, opening up the possibility for wave-particle interaction between the reflected ions and the observed whistlers. The linear stability analysis of a system mimicking the observed distribution, suggests that such a system can produce the observed waves.

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