1 MeV)'/> Testing the Organization of Lower-Band Whistler-Mode Chorus Wave Properties by Plasmapause Location
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Testing the Organization of Lower-Band Whistler-Mode Chorus Wave Properties by Plasmapause Location

机译:测试Lower-Band的组织Whistler-Mode合唱波属性等离子体层顶位置

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Lower-band whistler-mode chorus waves are important to the dynamics of Earth's radiation belts, playing a key role in accelerating seed population electrons (hundreds of keV) to relativistic (>1 MeV) energies, and in scattering electrons such that they precipitate into the atmosphere. When constructing and using statistical models of lower-band whistler-mode chorus wave power, it is commonly assumed that wave power is spatially distributed with respect to magnetic L-shell. At the same time, these waves are known to drop in power at the plasmapause, a cold plasma boundary which is dynamic in time and space relative to L-shell. This study organizes wave power and propagation direction data with respect to distance from the plasmapause location to evaluate what role the location of the plasmapause may play in defining the spatial distribution of lower-band whistler-mode chorus wave power. It is found that characteristics of the statistical spatial distribution of equatorial lower-band whistler-mode chorus are determined by L-shell and are largely independent of plasmapause location. The primary physical importance of the plasmapause is to act as an Earthward boundary to lower-band whistler-mode chorus wave activity. This behavior is consistent with an equatorial lower-band whistler-mode chorus wave power spatial distribution that follows the L-shell organization of the particles driving wave growth.
机译:Lower-band whistler-mode合唱波地球辐射的重要动力腰带,加速种子中发挥关键作用人口电子(数百keV)相对论(> 1兆电子伏)的能量,在散射电子,这样他们沉淀的气氛。统计模型的lower-band whistler-mode合唱波浪发电,它通常被假定波浪发电空间分布与尊重磁l层。波功率下降的等离子体层顶,冷等离子体边界动态相对于l层在时间和空间。本研究组织波浪发电和传播方向数据的距离等离子体层顶位置来评估中所扮演的角色等离子体层顶的位置可能在定义lower-band的空间分布whistler-mode合唱波浪发电。统计空间的特征赤道lower-band分布whistler-mode合唱团是由l层决定的和等离子体层顶在很大程度上是独立的的位置。等离子体层顶是作为一个向地面的边界lower-band whistler-mode合唱波活动。这种行为符合一个赤道lower-band whistler-mode合唱波浪发电空间分布遵循l层组织驾驶波的粒子增长。

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