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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >A simulation study of Io-related Jovian decametric radiation: Control factor of occurrence probability
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A simulation study of Io-related Jovian decametric radiation: Control factor of occurrence probability

机译:仿真研究Io-related威风凛凛的十米辐射:控制发生的因素概率

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[1] Io-Jupiter interaction leads to auroral emissions and Jovian decametric radiations (Io-DAM). The longitudinal distribution of the Io-DAM occurrence probability has been considered to be controlled by the footprint magnetic intensity of each hemisphere. Recent observations revealed that the brightness of the main auroral spot is mainly modulated by Io’s magnetic latitude. In the present study, we propose that the Io-DAMoccurrence probability is controlled by the north-south asymmetry of the footprint magnetic intensity, in addition to Io’s magnetic latitude. Hall magnetohydrodynamic equations are solved in the corotating meridional plane, which includes the Jovian ionosphere of finite thickness. We assume that the ionospheric Pedersen conductance is inversely proportional to the footprint magnetic intensity; the conductance is nearly the same for both ionospheres at a longitude of 290°, while twice higher for the south than for the north at a longitude of 110°. Above the northern ionosphere, the parallel current density further than 20° downstream of the main spot is estimated to be 1.5–2.0 times larger for 290° than for 110°. This indicates that if the Io-DAM lead angle is large, the suppressed Io-DAM occurrence probability for the northern hemisphere around 110° would be caused by the north-south asymmetry of the footprint magnetic intensity. A large current density conducted into the south around 110° would be the source of the Io-D component, radiated from the southern hemisphere. The observed brightness of the Io-related auroras is discussed in the context of the intensity of the parallel current density.
机译:[1] Io-Jupiter交互导致极光排放和威风凛凛的十米辐射(Io-DAM)。Io-DAM发生概率已经考虑控制的足迹磁每个半球的强度。显示的亮度主要极光点主要是调制Io的磁性纬度。Io-DAMoccurrence概率控制的南北不对称的足迹磁场强度,除了Io的磁性纬度。解决的共转子午面,包括有限的威风凛凛的电离层厚度。皮德森电导成反比足迹磁场强度;几乎是同样的两种电离层的吗290°的经度,而高的两倍南方比北方的经度110°。高于北方电离层,并行电流密度超过20°的下游主要是估计为1.5 - -2.0倍290°超过110°。如果Io-DAM超前角大,抑制Io-DAM发生的概率北半球大约110°会引起南北不对称的足迹磁场强度。进行到南方约110°Io-D组件的源,辐射的南半球。Io-related极光中讨论平行电流的强度密度。

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