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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Production of Negative Hydrogen IonsWithin the MMS Fast Plasma Investigation Due to SolarWind Bombardment
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Production of Negative Hydrogen IonsWithin the MMS Fast Plasma Investigation Due to SolarWind Bombardment

机译:由于Solarwind轰炸,MMS快速等离子体调查中的负氢离子的产生

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摘要

The particle data delivered by the Fast Plasma Investigation instrument aboard National Aeronautics and Space Administration's Magnetospheric Multiscale (MMS) mission allow for exceptionally high-resolution examination of the electron and ion phase space in the near-Earth plasma environment. It is necessary to identify populations which originate from instrumental effects. Using Fast Plasma Investigation's Dual Electron Spectrometers, we isolate a high-energy (approximately kiloelectron volt) beam, present while the spacecraft are in the solar wind, which exhibits an azimuthal drift with period associated with the spacecraft spin. We show that this population is consistent with negative hydrogen ions H~? generated by a double charge exchange interaction between the incident solar wind H~+ ions and the metallic surfaces within the instrument. This interaction is likely to occur at the deflector plates close to the instrument aperture. The H~? density is shown to be approximately 0.2–0.4% of the solar wind ion density, and the energy of the negative ion population is shown to be 70% of the incident solar wind energy. These negative ions may introduce errors in electron velocity moments on the order of 0.2–0.4% of the solar wind velocity and significantly higher errors in the electron temperature.
机译:通过快速等离子调查仪器提供的粒子数据,即在美国国家航空航天局的磁体多尺度(MMS)任务中允许对近地区等离子体环境中的电子和离子相空间进行异常高分辨率检查。有必要识别源自乐器效果的人群。使用快速等离子体调查的双电子光谱​​仪,我们隔离高能量(约千电子电压)梁,当航天器处于太阳风中时,其表现出与航天器旋转相关的周期的方位角漂移。我们表明,这种人群与负氢离子H一致〜?由入射太阳风H〜+离子和仪器内的金属表面之间的双电荷交换相互作用产生。该相互作用可能发生在靠近仪器孔的偏转板上。 h〜?密度显示为太阳能导电离子密度的约0.2-0.4%,并且负离子群的能量显示为入射太阳能风能的70%。这些负离子可能在太阳风速的0.2-0.4%的0.2-0.4%的误差下引入电子速度时刻的误差,并且电子温度下的误差显着更高。

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