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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Electron density estimations derived from spacecraft potential measurements on Cluster in tenuous plasma regions
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Electron density estimations derived from spacecraft potential measurements on Cluster in tenuous plasma regions

机译:电子密度估计来自宇宙飞船潜在的测量在集群上脆弱的等离子体区域

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摘要

Spacecraft potential measurements by the EFW electric field experiment on the Cluster satellites can be used to obtain plasma density estimates in regions barely accessible to other type of plasma experiments. Direct calibrations of the plasma density as a function of the measured potential difference between the spacecraft and the probes can be carried out in the solar wind, the magnetosheath, and the plasmashere by the use of CIS ion density and WHISPER electron density measurements. The spacecraft photoelectron characteristic (photoelectrons escaping to the plasma in current balance with collected ambient electrons) can be calculated from knowledge of the electron current to the spacecraft based on plasma density and electron temperature data from the above mentioned experiments and can be extended to more positive spacecraft potentials by CIS ion and the PEACE electron experiments in the plasma sheet. This characteristic enables determination of the electron density as a function of spacecraft potential over the polar caps and in the lobes of the magnetosphere, regions where other experiments on Cluster have intrinsic limitations. Data from 2001 to 2006 reveal that the photoelectron characteristics of the Cluster spacecraft as well as the electric field probes vary with the solar cycle and solar activity. The consequences for plasma density measurements are addressed. Typical examples are presented to demonstrate the use of this technique in a polar cap/lobe plasma.
机译:宇宙飞船EFW潜在的测量在集群上电场的实验卫星可以用来获得等离子体密度估计难以获取的其他地区类型的等离子体实验。等离子体密度的函数衡量潜在的差异可以进行航天器和探测器太阳风、磁鞘和plasmashere使用CIS离子密度和耳语电子密度测量。宇宙飞船光电子特性(光电子逃离的等离子体电流与收集环境电子)可以平衡计算从现在的电子知识基于等离子体密度和航天飞船从上面的电子温度数据提到的实验,可以扩展到更多积极的航天器通过CIS离子和潜力和平电子等离子体实验表。这一特点使确定的航天器电子密度的函数潜在的极帽和叶的磁气圈,其他地区实验集群具有内在的局限性。集群的光电子特性宇宙飞船以及电场探头随太阳活动周期和太阳活动。影响等离子体密度测量解决。极地演示这种技术的使用帽/叶等离子体。

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