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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >The relationship between j × B and ·e in the magnetotail plasma sheet: Cluster observations
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The relationship between j × B and ·e in the magnetotail plasma sheet: Cluster observations

机译:j×B和e·之间的关系磁尾等离子体片:集群的观察

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摘要

In this paper we report an extension to Henderson et al.'s (2006) case study, in which we investigate the generality of the anticorrelation between the · e and j × B terms in Ohm's law observed in the plasma sheet. Further current sheet crossings are investigated which occurred on 17 August 2003 and 24 September 2003. Data from this period are particularly relevant as the interspacecraft separations are at their smallest for the Cluster mission. We confirm the generality of the observed anticorrelation and observe that the contributions to the electric field were mainly in the direction normal to the neutral sheet. A simple magnetohydrostatic treatment is used to explain the correlation and directional organization. The treatment is able to explain the anticorrelation and how the relative contributions to the electric field from the · e and j × B terms in Ohm's law may be linked to the temperature ratio of the different plasma constituents as well as their spatial scales. In the examples reported here, the scale length over which the electron pressure changed l e was smaller than the scale over which the ion pressure changed l i , with l e /l i being between ~0.1 and ~0.4.
机译:在本文中,我们报告一个扩展亨德森et al(2006)的案例研究中,我们调查anticorrelation的普遍性之间和j·e×B在欧姆定律观察到等离子体单。关口表调查发生2003年8月17日,2003年9月24日。从这一时期特别相关的interspacecraft分离是最小的集群的任务。一般性的观察anticorrelation和观察到电的贡献主要的方向正常中性表。用于解释的相关性和治疗定向组织。解释anticorrelation和如何电场的相对贡献j·e×B在欧姆定律与温度的比例不同等离子体成分以及他们的空间鳞片。电子压力改变了l长度e比规模较小的离子压力改变了我我,我l e / l~ 0.1 ~ 0.4之间。

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