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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Low-frequency whistler waves and shocklets observed at quasi-perpendicular interplanetary shocks
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Low-frequency whistler waves and shocklets observed at quasi-perpendicular interplanetary shocks

机译:低频波浪和shocklets惠斯勒观察到quasi-perpendicular星际的冲击

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摘要

We present observations of low-frequency waves (0.25 Hz < f < 10 Hz) at five quasi-perpendicular interplanetary (IP) shocks observed by the Wind spacecraft. Four of the five IP shocks had oblique precursor whistler waves propagating at angles with respect to the magnetic field of 20°-50° and large propagation angles with respect to the shock normal; thus they do not appear to be phase standing. One event, the strongest in our study and likely supercritical, had low-frequency waves consistent with steepened magnetosonic waves called shocklets. The shocklets are seen in association with diffuse ion distributions. Both the shocklets and precursor whistlers are often seen simultaneously with anisotropic electron distributions unstable to the whistler heat flux instability. The IP shock with upstream shocklets showed much stronger electron heating across the shock ramp than the four events without upstream shocklets. These results may offer new insights into collisionless shock dissipation and wave-particle interactions in the solar wind.
机译:我们现在观察低频波(0.25 Hz五quasi-perpendicular < f < 10 Hz)星际(IP)冲击风观察到宇宙飞船。斜前体惠斯勒波传播角的磁场20°-50°和大型传播角度与尊重冲击正常;阶段站。我们的研究和可能的超临界低频波符合趋陡magnetosonic波称为shocklets。shocklets与扩散离子分布。前体吹口哨的人经常同时出现与各向异性电子分布不稳定惠斯勒的热通量的不稳定。冲击与上游shocklets显示更强的电子加热整个冲击坡道比没有上游shocklets 4个事件。这些结果可能会提供新的见解无碰撞的冲击耗散和波粒在太阳风相互作用。

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