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Supersonic winds in Jupiter's aurorae

机译:木星极光中的超音速风

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Jupiter has a giant magnetosphere that is coupled to the planet's upper atmosphere; as the planet rotates, its magnetic field drags a dense ionized equatorial sheet of plasma, which must interact with the upper atmosphere. Jupiter's aurorae are much more powerful than the Earth's, and cause significant local heating of the upper atmosphere. Auroral electrojets—ion winds that race around Jupiter's auroral ovals—play a key role in theoretical models of how Jupiter's rotational energy is transferred to the plasma sheet and how winds may transport energy from auroral heating to lower latitudes. But there has hitherto been no direct observational evidence for the existence of such electrojets. Here we report observations of electrojets that have winds approaching or in excess of the local speed of sound. The energy produced by these electrojets could heat the whole upper atmosphere, if the auroral regions couple efficiently with the rest of the planet.
机译:木星有一个巨大的磁层,它与行星的高层大气耦合。当行星旋转时,其磁场会拖动致密的电离赤道等离子体,该等离子体必须与高层大气相互作用。木星的极光比地球强大得多,并引起高空大气的局部加热。极光电喷是围绕木星极光椭圆运动的离子风,在有关木星旋转能量如何转移到等离子片以及风如何将能量从极光加热传递到较低纬度的理论模型中起着关键作用。但是,迄今为止,尚无直接观察到此类电喷存在的证据。在这里,我们报告对风速接近或超过局部声速的电喷的观察。如果极光区域与行星的其余部分有效耦合,则这些电喷产生的能量可以加热整个高层大气。

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