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Relationships between field-aligned currents, electric fields and particle precipitation as observed by dynamics Explorer-2

机译:动力学浏览器2观察到的场对准电流,电场和颗粒沉淀之间的关系

摘要

The relationships between field-aligned currents, electric fields, and particle fluxes are determined using observations from the polar orbiting low-altitude satellite Dynamics Explorer-2. It is shown that the north-south electric field and the east-west magnetic field components are usually highly correlated in the field-aligned current regions. This proportionality observationally proves that the field-aligned current equals the divergence of the height-integrated ionospheric Pedersen current in the meridional plane to a high degree of approximation. As a general rule, in the evening sector the upward field-aligned currents flow in the boundary plasma sheet region and the downward currents flow in the central plasma sheet region. The current densities determined independently from the plasma and magnetic field measurements are compared. Although the current densities deduced from the two methods are in general agreement, the degree and extent of the agreement vary in individual cases.
机译:使用来自极地轨道低空卫星Dynamics Explorer-2的观测结果来确定场对准电流,电场和粒子通量之间的关系。结果表明,在磁场对准的电流区域中,南北电场和东西磁场分量通常高度相关。这种比例性在观察上证明了,在高度上,场对准电流等于子午面中高度积分电离层Pedersen电流的发散。通常,在傍晚时段,向上的场取向电流在边界等离子体片区域中流动,而向下的电流在中央等离子体片区域中流动。比较独立于等离子体和磁场测量确定的电流密度。尽管从这两种方法得出的当前密度总体上是一致的,但是在个别情况下,一致的程度和程度是不同的。

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