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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Rotational modulation and local time dependence of Saturn's infrared H3 + auroral intensity
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Rotational modulation and local time dependence of Saturn's infrared H3 + auroral intensity

机译:旋转调制和当地时间的依赖关系土星的红外H3 +极光强度

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摘要

Planetary auroral emissions reveal the configuration of magnetospheric field-aligned current systems. In this study, Cassini Visual and infrared Mapping Spectrometer (VIMS) observations of Saturn's pre-equinox infrared H3 + aurorae were analysed to show (a) rotational modulation of the auroral intensity in both hemispheres and (b) a significant local time dependence of the emitted intensity. The emission intensity is modulated by the 'planetary period' rotation of auroral current systems in each hemisphere. The northern auroral intensity also displays a lesser anti-phase dependence on the southern rotating current system, indicating that part of the southern current system closes in the northern hemisphere. The southern hemisphere aurorae were most intense in the post-dawn sector, in agreement with some past measurements of auroral field-aligned currents, UV aurora and SKR emitted power. A corresponding investigation of the northern hemisphere auroral intensity reveals a broader dawn-noon enhancement, possibly due to the interaction of the southern rotating current system with that of the north. The auroral intensity was reduced around dusk and post-midnight in both hemispheres. These observations can be explained by the interaction of a rotating field-aligned current system in each hemisphere with one fixed in local time, which is related to the solar wind interaction with magnetospheric field lines.
机译:揭示了行星极光排放配置的磁性层的field-aligned当前的系统。映射和红外分光仪测量到了观测土星的pre-equinox红外H3+极光分析显示(a)旋转极光强度的调制半球和(b)一个重要的当地时间排放强度的依赖。强度调制的“行星周期”旋转的极光当前系统半球。显示一个较小的反相依赖当前系统旋转南部,表明当前系统关闭南部的一部分北半球。post-dawn极光是最强烈的部门,同意一些过去的测量极光field-aligned电流,紫外线极光SKR释放力量。北半球的极光强度揭示了一个更广泛的dawn-noon增强,可能由于南方旋转之间的交互当前系统的北方。极光在黄昏和强度减少午夜之后在两个半球。观察可以解释的交互当前系统的旋转field-aligned每个半球有一个固定在当地时间与太阳风相互作用是什么与磁性层的磁场线。

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