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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Energy deposition by Alfvén waves into the dayside auroral oval: Cluster and FAST observations
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Energy deposition by Alfvén waves into the dayside auroral oval: Cluster and FAST observations

机译:由阿尔芬波能量沉积的光面极光椭圆:集群和快速观察

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We report in situ observations from the Cluster and FAST spacecraft showing the deposition of energy into the auroral ionosphere from broadband ULF waves in the cusp and low-latitude boundary layer. A comparison of the wave Poynting flux with particle energy and flux at both satellites indicates that energy transfer from the broadband waves to the plasma occurs through field-aligned electron acceleration, transverse ion acceleration, and Joule heating. These processes are shown to result in precipitating electron fluxes sufficient to drive bright aurora and cause outflows of energized electrons and O+ ions from the ionosphere into the low-latitude boundary layer. By solving an eigenmode equation for Alfvén waves in the observed plasma environment, it is shown that the broadband waves observed at Cluster and FAST are dispersive Alfvén waves. It is demonstrated that these waves have wavelengths perpendicular to the geomagnetic field extending from significant fractions of an L shell down to ion gyroradii and electron inertial lengths and wave frequencies in the plasma frame from 1 mHz up to 50 mHz. These waves are shown to have wavelengths along the geomagnetic field of the order of the field line length between the ionosphere and the equatorial plane and become field line resonances (FLRs) when on closed field lines. It is shown that the inclusion of nonlinear and/or nonlocal kinetic effects is required in the description of these waves to account for accelerated particles observed. On the basis of the wave polarization and spectral properties observed from Cluster and FAST it is speculated that these waves are generated through the mode conversion of surface Alfvén waves driven by tailward flows in the low-latitude boundary layer.
机译:我们从集群报告原位观察和快速沉积的航天器从宽带能量到极光电离层ULF波尖端和低纬度的边界层。粒子能量和通量在卫星从宽带表明能量转移波通过field-aligned等离子体发生电子加速度、横向离子加速度和焦耳加热。显示导致沉淀电子吗通量充足明亮的极光和开车导致流出的激发电子和O +离子从低纬度电离层边界层。阿尔芬波的观察到等离子体环境,结果表明,宽带波观察到集群和快速分散阿尔芬波。波长与地磁垂直吗从重要的分数L层离子gyroradii和电子惯性长度和波的频率等离子体框架从1 mHz 50 mHz。所示的波长地磁场的字段的顺序电离层和赤道之间的长度飞机,成为场线共振(flr)在封闭的电场线。包含非线性和/或外地动能这些影响中需要描述波占加速粒子观察到。和光谱特性从集群和观察快速推测,这些波通过表面的模式变换生成的阿尔芬波由tailward流驱动的低纬度边界层。

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