首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >ULF Wave Driven Radial Diffusion During Geomagnetic Storms: A Statistical Analysis of Van Allen Probes Observations
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ULF Wave Driven Radial Diffusion During Geomagnetic Storms: A Statistical Analysis of Van Allen Probes Observations

机译:ULF波驱动的径向扩散范的地磁风暴:统计分析艾伦探针观察

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The impact of radial diffusion in storm time radiation belt dynamics is well-debated. In this study we quantify the changes and variability in radial diffusion coefficients during geomagnetic storms. A statistical analysis of Van Allen Probes data (2012-2019) is conducted to obtain measurements of the magnetic and electric power spectral densities for Ultra Low Frequency (ULF) waves, and corresponding radial diffusion coefficients. The results show global wave power enhancements occur during the storm main phase, and continue into the recovery phase. Local time asymmetries show sources of wave power are both external solar wind driving and internal sources from coupling with ring current ions and substorms. Wave power enhancements are also observed at low L values (L < 4). The accessibility of wave power to low L is attributed to a depression of the Alfvén continuum. The increased wave power drives enhancements in both the magnetic and electric field diffusion coefficients by more than an order of magnitude. Significant variability in diffusion coefficients is observed, with values ranging over several orders of magnitude. A comparison to the Kp parameterized empirical model of Ozeke et al. (2014) is conducted and indicates important differences during storm times. Although the electric field diffusion coefficient is relatively well described by the empirical model, the magnetic field diffusion coefficient is approximately ~10 times larger than predicted. We discuss how differences could be attributed to data set limitations and assumptions. Alternative storm-time radial diffusion coefficients are provided as a function of L* and storm phase.
机译:在风暴径向扩散的影响辐射带well-debated动力学。研究中我们量化的变化和变化在地磁径向扩散系数风暴。调查数据(2012 - 2019)进行获取测量磁场和电力超低频率谱密度(ULF)波,和相应的径向扩散系数。增强发生在风暴的主要阶段,并继续进入复苏阶段。不对称波动力的来源都是内部太阳风驾驶和外部来源与环电流离子和耦合亚暴。观察到在低L值(L < 4)。L是波浪发电的可访问性低归因于阿尔芬的抑郁连续体。增强磁和电字段由一个多扩散系数数量级。扩散系数是观察到,值包括几个数量级。相比Kp参数化经验模型Ozeke et al .(2014)进行表明风暴期间重要的差异次了。所描述的系数是相对较好实证模型,磁场扩散系数大约是~ 10倍比预测。是由数据集和局限性假设。扩散系数是作为一个函数提供L *和风暴阶段。

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