首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Determining EMIC Wave Vector Properties Through Multi-Point Measurements: The Wave Curl Analysis
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Determining EMIC Wave Vector Properties Through Multi-Point Measurements: The Wave Curl Analysis

机译:通过确定位的波矢量属性多点测量:波旋度分析

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Electromagnetic ion cyclotron (EMIC) waves play important roles in particle loss processes in the magnetosphere. Determining the evolution of EMIC waves as they propagate and how this evolution affects wave-particle interactions requires accurate knowledge of the wave vector, k. We present a technique using the curl of the wave magnetic field to determine k observationally, enabled by the unique configuration and instrumentation of the Magnetospheric MultiScale (MMS) spacecraft. The wave curl analysis is demonstrated for synthetic arbitrary electromagnetic waves with varying properties typical of observed EMIC waves. The method is also applied to an EMIC wave interval observed by MMS on October 28, 2015. The derived wave properties and k from the wave curl analysis for the observed EMIC wave are compared with the Waves in Homogenous, Anisotropic, Multi-component Plasma (WHAMP) wave dispersion solution and with results from other single- and multi-spacecraft techniques. We find good agreement between k from the wave curl analysis, k determined from other observational techniques, and k determined from WHAMP. Additionally, the variation of k due to the time and frequency intervals used in the wave curl analysis is explored. This exploration demonstrates that the method is robust when applied to a wave containing at least 3-4 wave periods and over a rather wide frequency range encompassing the peak wave emission. These results provide confidence that we are able to directly determine the wave vector properties using this multi-spacecraft method implementation,enabling systematic studies of EMIC wave k properties with MMS.
机译:电磁离子回旋波(位的)重要的角色在粒子损失过程磁气圈。波传播和如何进化影响波粒相互作用需要波矢的准确知识,k。我们技术利用波的旋度磁场确定k根据观察,独特的配置和启用仪表的磁性层的多尺度(MMS)宇宙飞船。证明了合成任意电磁波具有不同的属性典型的观测位的波。也适用于一个位的波间隔观测到MMS 10月28日,2015年。属性和k波旋度的分析观察到的位的波比波在均匀、各向异性、多组分的等离子体波色散(WHAMP)和解决方案结果从其他单和multi-spacecraft技术。波旋度分析、k决定从其他观测技术和k决定WHAMP。使用的时间和频率间隔波旋度的分析探讨。证明方法是健壮的应用于包含至少3 - 4波一波期间和在相当宽的频率范围内包括波发射峰值。结果,我们能够提供信心直接确定波矢量属性使用这个multi-spacecraft方法实现,使系统的研究位的波k和MMS属性。

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