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The dependence ofmagnetospheric plasma mass loading on geomagnetic activity using Cluster

机译:依赖ofmagnetospheric等离子体质量加载地磁活动使用集群

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Understanding changes in the magnetospheric mass density during disturbed geomagnetic conditions provides valuable insight into the dynamics and structure of the environment. The mass density plays a significant role in a variety of magnetospheric processes, such as wave propagation, magnetic reconnection rates, and radiation belt dynamics. In this study, the spatial variations of total plasma mass density are explored through the analysis of Cluster observations. Data from the WHISPER (Waves of High frequency and Sounder for Probing of Electron density by Relaxation) and CODIF (ion Composition and Distribution Function analyzer) instruments, on board the four Cluster spacecraft for a time interval spanning 2001-2012, are used to determine empirical models describing the distribution of the total plasma mass density along closed geomagnetic field lines. The region considered covers field lines within 5.9 ≤ L < 9.5, corresponding to the outer plasmasphere, plasmatrough, and near-Earth plasma sheet. This study extends previous work to examine and quantify spatial variations in the electron density, average ion mass, and total plasma mass density with D_(st) index. The results indicate that during periods of enhanced ring current strength, electron density is observed to decrease and average ion mass is observed to increase, compared with quiet geomagnetic conditions. The combination of these variations shows that although heavy ion concentration is enhanced, the decrease in plasma number density results in a general decrease in total plasma mass density during disturbed geomagnetic conditions. The observed decrease in mass density is in contrast to prevailing understanding and, due to the dependence of the Alfvén speed on mass density, has important implications for a range of plasma processes during storm time conditions (e.g., propagation of wave modes).
机译:理解变化的磁性层的质量密度在地磁干扰条件下提供了动力和宝贵的见解环境的结构。在各种中扮演一个重要的角色磁性层的过程,如波传播、磁重联率和辐射带动态。总等离子体质量密度的空间变化通过分析,探讨了集群观察。高频率和测深仪的探测电子密度的松弛)和CODIF(离子组成和分布函数分析仪)仪器,在四个集群航天器时间间隔生成2001 - 2012,确定实证模型描述总等离子体质量密度的分布在封闭的磁场线。考虑了电场线内≤5.9 L <9.5、对应外等离子体层plasmatrough,近地等离子板。检查和研究扩展了以前的工作量化空间变化的电子总等离子体密度、平均离子质和质量密度与D_ (st)指数。时期,增强环电流力量,电子密度是观察到减少和平均离子质量是观察到增加,而安静的地磁条件。表明,尽管沉重的离子浓度增强等离子体数密度下降结果一般减少总等离子体在地磁干扰质量密度条件。与流行的理解,由于阿尔芬速度质量的依赖密度,对一系列具有重要影响在风暴期间的等离子体过程条件(例如,波的传播模式)。

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