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首页> 外文期刊>Geophysical Research Letters >An acceleration mechanism for the generation of the main auroral oval on Jupiter - art. no. 1260
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An acceleration mechanism for the generation of the main auroral oval on Jupiter - art. no. 1260

机译:在木星上产生主要极光椭圆的加速机制-艺术。没有。 1260

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1] In this paper we argue that the weak turbulence observed in the middle magnetosphere of Jupiter couples with the net electric current system needed to maintain Jupiter's magnetospheric rotation [Hill, 1979, 1980] to create a magnetic field-aligned potential drop sufficient to accelerate magnetospheric electrons to energies required to produce Jupiter's main auroral oval. Based on arguments regarding overall energy within magnetic flux tubes, we estimate a field-aligned potential of similar to100 kV. We also show that the intensity of the turbulent fluctuations maximizes on field lines at equatorial distances between 18 and 30 Jovian radii. These distances correspond to the field lines where the main auroral oval is observed. The electrons accelerated on these field lines carry a total energy of similar to6 TW. [References: 25
机译:1]在本文中,我们认为在木星中层磁层中观察到的弱湍流与维持木星磁层旋转所需的净电流系统耦合[Hill,1979,1980],以产生足以加速磁场定向的势能下降磁层电子将能量转换为产生木星主极光椭圆所需的能量。基于有关磁通量管内总能量的论点,我们估计了与100 kV相似的场对准电势。我们还显示,湍流涨落的强度在赤道距离介于18和30的朱维安半径之间的磁力线上达到最大。这些距离对应于观察到主要极光椭圆的场线。在这些磁力线上加速的电子携带的总能量接近6 TW。 [参考:25

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