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Transient internally driven aurora at Jupiter discovered by Hisaki and the Hubble Space Telescope

机译:Hisaki和哈勃太空望远镜在木星上产生的瞬态内部驱动极光

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摘要

Jupiter's auroral emissions reveal energy transport and dissipation through the planet's giant magnetosphere. While the main auroral emission is internally driven by planetary rotation in the steady state, transient brightenings are generally thought to be triggered by compression by the external solar wind. Here we present evidence provided by the new Hisaki spacecraft and the Hubble Space Telescope that shows that such brightening of Jupiter's aurora can in fact be internally driven. The brightening has an excess power up to similar to 550 GW. Intense emission appears from the polar cap region down to latitudes around Io's footprint aurora, suggesting a rapid energy input into the polar region by the internal plasma circulation process.
机译:木星的极光辐射揭示了通过地球巨大磁层的能量传输和消散。虽然主要的极光发射是在稳定状态下由行星旋转内部驱动的,但通常认为瞬态增亮是由外部太阳风的压缩触发的。在这里,我们提供了由新的Hisaki航天器和哈勃太空望远镜提供的证据,这些证据表明木星极光的照亮实际上可以由内部驱动。增亮具有高达550 GW的多余功率。强烈的发射从极帽区域向下到艾奥足迹极光周围的纬度出现,表明内部等离子体循环过程将能量快速输入极区。

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