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首页> 外文期刊>Journal of geophysical research. Planets >Observations and Electron Density Retrievals of Jupiter's Discrete Auroral Arcs Using the Juno Microwave Radiometer
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Observations and Electron Density Retrievals of Jupiter's Discrete Auroral Arcs Using the Juno Microwave Radiometer

机译:观察和电子密度的检索使用朱诺木星的离散极光弧微波辐射计

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摘要

Jupiter's aurorae reflect microwave radiation emitted upward from Jupiter's atmosphere and downward from the cold sky above due to regions in the auroral plasma with increased electron densities. The lack of thermal radiation from the atmosphere was observed by Juno's Microwave Radiometer (MWR) on overflights of the aurorae during seven different orbits. Out of Juno's first 21 orbits, seven orbits inferred enhanced electron densities in Jupiter's auroral arcs. The most profound disruption in microwave emission was observed during Perijove 5. This perijove demonstrated the most significant cold spot for Channel 1 (0.6 GHz), with cold spots also present in Channels 2 (1.25 GHz) and 3 (2.6 GHz) in a location where the influence of Jupiter's moon, Io, likely increased the electron density in Jupiter's aurora. The maximum electron densities retrieved from Channel 1 are on the order of 3 × 10~9 cm~(-3), and in the presence of the Io flux tube, electron densities could reach 10~(10) cm~(-3) affecting Channels 2 and 3.
机译:木星的极光反映微波辐射从木星大气层和排放上升由于区域向下从寒冷的天空在极光与增加电子等离子体密度。大气是观察到朱诺的微波极光的辐射计(MWR)航班在七个不同的轨道。第一个21轨道,七轨道推断增强电子密度在木星的极光弧。最深刻的中断微波发射观察期间Perijove 5。展示最重要的冷点通道1 (0.6 GHz),冷点也在场通道2 (1.25 GHz)和3 (2.6 GHz)木星的卫星的位置的影响,Io,可能增加了电子密度木星的极光。从通道1的顺序检索3×10 ~ 9厘米~(3),在Io通量管、电子密度可达10 ~ (10)厘米~ 2和3(3)影响通道。

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