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Control of Jupiter's radio emission and aurorae by the solar wind

机译:通过太阳风控制木星的无线电发射和极光

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摘要

Radio emissions from Jupiter provided the first evidence that this giant planet has a strong magnetic field(1,2) and a large magnetosphere(3). Jupiter also has polar aurorae(4), which are similar in many respects to Earth's aurorae(5). The radio emissions are believed to be generated along the high-latitude magnetic field lines by the same electrons that produce the aurorae, and both the radio emission in the hectometric frequency range and the aurorae vary considerably(6,7). The origin of the variability, however, has been poorly understood. Here we report simultaneous observations using the Cassini and Galileo spacecraft of hectometric radio emissions and extreme ultraviolet auroral emissions from Jupiter. Our results show that both of these emissions are triggered by interplanetary shocks propagating outward from the Sun. When such a shock arrives at Jupiter, it seems to cause a major compression and reconfiguration of the magnetosphere, which produces strong electric fields and therefore electron acceleration along the auroral field lines, similar to the processes that occur during geomagnetic storms at the Earth.
机译:木星的无线电辐射提供了第一个证据,证明这个巨大的行星具有强磁场(1,2)和大磁层(3)。木星也有极光(4),在许多方面与地球的极光(5)相似。无线电辐射被认为是由产生极光的相同电子沿着高纬度磁场线产生的,在公制频率范围内和极光的无线电发射都相差很大(6,7)。但是,人们对可变性的起源知之甚少。在这里,我们报告同时使用卡西尼号和伽利略号航天器观测到的木星的无线电辐射和极紫外极光辐射。我们的结果表明,这两种排放都是由从太阳向外传播的行星际激波触发的。当这样的冲击到达木星时,似乎会引起磁层的重大压缩和重构,从而产生强电场,并因此沿着极光场线产生电子加速,类似于地球上的地磁风暴期间发生的过程。

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