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Distribution of ULF Wave Power in Magnetic Latitude and Local Time Using THEMIS and Arase Measurements

机译:Distribution of ULF Wave Power in Magnetic Latitude and Local Time Using THEMIS and Arase Measurements

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Ultra-low-frequency (ULF) waves are known to radially diffuse hundreds-keV to few-MeV electrons in the magnetosphere, as the range of drift frequencies of such electrons overlaps with the frequencies of the waves, leading to resonant interactions. The theoretical framework for this process is described by analytic expressions of the resonant interactions between electrons and toroidal and poloidal ULF wave modes in a background magnetic field. However, most expressions estimate the radial diffusion rates based on estimates of the power of ULF waves that are obtained either from spacecraft close to the equatorial plane or from the ground. In this study, using multiyear measurements from the THEMIS and Arase missions, we present a statistical analysis of the distribution of ULF wave power in magnetic latitude and local time and show that the wave power of the radial and azimuthal components of the magnetic field increases away from the magnetic equator. Our result could have significant implications for the radial diffusion rates as currently estimated.
机译:Ultra-low-frequency (ULF)已知径向扩散hundreds-keV few-MeV电子在磁气圈的范围这些电子的漂移频率重叠波的频率,导致共振交互。过程描述的解析表达式电子和共振相互作用在一个环形和极向ULF波模式背景磁场。表达式估计径向扩散率根据估计的ULF波的力量是获得从宇宙飞船接近吗赤道平面或从地面。研究中,使用多年的测量忒弥斯和Arase任务,我们提出一个ULF分布的统计分析波浪发电在磁纬度和当地时间和表明,径向的波浪发电方位磁场的组件增加磁赤道。结果可能产生重大影响目前的径向扩散率估计。

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