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Wave particle interactions in the high-altitude polar cusp: a Cluster case study

机译:高空极尖处的波粒相互作用:一个集群案例研究

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On 23 March 2002, the four Cluster spacecraft crossed in close configuration (~100 km separation) the high-altitude (10 R_E) cusp region. During a large part of the crossing, the STAFF and EFW instruments have detected strong electromagnetic wave activity at low frequencies, especially when intense field-aligned proton fluxes were detected by the CIS/HIA instrument. In all likelihood, such fluxes correspond to newly-reconnected field lines. A focus on one of these ion injection periods highlights the interaction between waves and protons. The wave activity has been investigated using the k-filtering technique. Experimental dispersion relations have been built in the plasma frame for the two most energetic wave modes. Results show that kinetic Alfven waves dominate the electromagnetic wave spectrum up to 1 Hz (in the spacecraft frame). Above 0.8 Hz, intense Bernstein waves are also observed. The close simultaneity observed between the wave and particle events is discussed as an evidence for local wave generation. A mechanism based on current instabilities is consistent with the observations of the kinetic Alfven waves. A weak ion heating along the recently-opened field lines is also suggested from the examination of the ion distribution functions. During an injection event, a large plasma convection motion, indicative of a reconnection site location, is shown to be consistent with the velocity perturbation induced by the large-scale Alfven wave simultaneously detected.
机译:2002年3月23日,四架集束航天器以紧密的配置(相距约100 km)越过了高海拔(R_E)尖端区域。在穿越的大部分时间里,STAFF和EFW仪器在低频下检测到强电磁波活动,尤其是当CIS / HIA仪器检测到强场对准的质子通量时。这些通量极有可能对应于新近重新连接的磁力线。对这些离子注入周期之一的关注突出了波与质子之间的相互作用。波活动已使用k滤波技术进行了研究。在等离子体框架中针对两种最强的波模式建立了实验色散关系。结果表明,动力学阿尔夫文波在电磁波谱中占主导地位(在航天器框架中)高达1 Hz。在0.8 Hz以上,还会观察到强烈的伯恩斯坦波。讨论了在波与粒子事件之间观察到的紧密同时性,作为局部波产生的证据。基于电流不稳定性的机制与动力学Alfven波的观察结果一致。通过检查离子分布函数,还建议沿最近打开的场线进行弱离子加热。在注入过程中,大的等离子体对流运动(表明重新连接的位置)表明与同时检测到的大规模Alfven波引起的速度扰动相一致。

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