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Transient brightening of Jupiter's aurora observed by the Hisaki satellite and Hubble Space Telescope during approach phase of the Juno spacecraft

机译:JUPITER的AURORA瞬态增亮观察了Hisaki卫星和哈勃太空望远镜在朱诺航天器的接近阶段

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摘要

In early 2014, continuous monitoring with the Hisaki satellite discovered transient auroral emission at Jupiter during a period when the solar wind was relatively quiet for a few days. Simultaneous imaging made by the Hubble Space Telescope (HST) suggested that the transient aurora is associated with a global magnetospheric disturbance that spans from the inner to outer magnetosphere. However, the temporal and spatial evolutions of the magnetospheric disturbance were not resolved because of the lack of continuous monitoring of the transient aurora simultaneously with the imaging. Here we report the coordinated observation of the aurora and plasma torus made by Hisaki and HST during the approach phase of the Juno spacecraft in mid-2016. On day 142, Hisaki detected a transient aurora with a maximum total H-2 emission power of similar to 8.5 TW. The simultaneous HST imaging was indicative of a large "dawn storm," which is associated with tail reconnection, at the onset of the transient aurora. The outer emission, which is associated with hot plasma injection in the inner magnetosphere, followed the dawn storm within less than two Jupiter rotations. The monitoring of the torus with Hisaki indicated that the hot plasma population increased in the torus during the transient aurora. These results imply that the magnetospheric disturbance is initiated via the tail reconnection and rapidly expands toward the inner magnetosphere, followed by the hot plasma injection reaching the plasma torus. This corresponds to the radially inward transport of the plasma and/or energy from the outer to the inner magnetosphere.
机译:在2014年初,与Hisaki卫星的连续监测在太阳风相对安静的时期在JUPITER期间发现了瞬态的极光发射。哈勃太空望远镜(HST)制造的同时成像表明,瞬态极光与跨越外磁层跨越的全局磁体扰动相关联。然而,由于与成像同时缺乏连续监测瞬时极光,磁体干扰的时间和空间演进仍未解决。在这里,我们在2016年中期,在Juno SpaceCraft的接近阶段,在Hisaki和HST制造的极光和血浆圆环的协调观察。在第142天,Hisaki检测到瞬态极光,最大总H-2发射功率与8.5 TW相似。同时HST成像表示大的“曙光风暴”,其在瞬态Aurora的开始处与尾部重新连接相关联。外部发射与内磁层中的热等离子体注射相关,随后在少于两个木星旋转的黎明风暴之后。用Hisaki对圆环的监测表明,瞬态Aurora期间的热血浆群体在圆环中增加。这些结果意味着通过尾部重新连接启动磁体干扰,并迅速地扩展到内磁层,然后达到距离等离子体圆环的热等离子体喷射。这对应于来自外层磁层的等离子体和/或能量的径向向内传输。

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  • 来源
    《Geophysical Research Letters》 |2017年第10期|共9页
  • 作者单位

    RIKEN Nishina Ctr Accelerator Based Sci Saitama Japan;

    Univ Leicester Dept Phys &

    Astron Leicester Leics England;

    Univ Lancaster Dept Phys Lancaster England;

    Natl Inst Informat &

    Commun Technol Tokyo Japan;

    Japan Aerosp Explorat Agcy Inst Space &

    Astronaut Sci Sagamihara Kanagawa Japan;

    Japan Aerosp Explorat Agcy Inst Space &

    Astronaut Sci Sagamihara Kanagawa Japan;

    Univ Lancaster Dept Phys Lancaster England;

    Tohoku Univ Planetary Plasma &

    Atmospher Res Ctr Sendai Miyagi Japan;

    Univ Tokyo Grad Sch Sci Dept Earth &

    Planetary Sci Tokyo Japan;

    Tohoku Univ Planetary Plasma &

    Atmospher Res Ctr Sendai Miyagi Japan;

    Univ Liege Lab Planetary &

    Atmospher Phys Liege Belgium;

    Johns Hopkins Univ Appl Phys Lab Laurel MD USA;

    Univ Tokyo Dept Complex Sci &

    Engn Kashiwa Chiba Japan;

    Japan Aerosp Explorat Agcy Inst Space &

    Astronaut Sci Sagamihara Kanagawa Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
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