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Discovery of Atmospheric-Wind-Driven Electric Currents in Saturn's Magnetosphere in the Gap Between Saturn and its Rings

机译:土星与戒指差距中土星磁层中的大气风力电流发现

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摘要

Magnetic field observations obtained by the Cassini spacecraft as it traversed regions inside of Saturn's D ring packed a genuine surprise. The azimuthal component of the magnetic field recorded a consistent positive perturbation with a strength of 15-25 nT near closest approach. The closest approaches were near the equatorial plane of Saturn and were distributed narrowly around local noon and brought the spacecraft to within 2,550 km of Saturn's cloud tops. Modeling of this perturbation shows that it is not of internal origin but is produced by external currents that couple the low-latitude northern ionosphere to the low-latitude southern ionosphere. The azimuthal perturbations diminish at higher latitudes on field lines that connect to Saturn's icy rings. The sense of the current system suggests that the southern feet of the field lines in the ionosphere leads their northern counterparts. We show that the observed field perturbations are consistent with a field-aligned current whose strength is similar to 1 MA/radian, that is, comparable in strength to the planetary-period-oscillation-related current systems observed in the auroral zone. We show that the Lorentz force in the ionosphere extracts momentum from the faster moving low-latitude zonal belt and delivers it to the northern ionosphere. We further show that the electric current is generated when the two ends of a field line are embedded in zonal flows with differing wind speeds in the low-latitude thermosphere. The wind-generated currents dissipate 2 x 10(11) W of thermal power, similar to the input from the solar extreme ultraviolet flux in this region.
机译:Cassini SpaceCraft获得磁场观测,因为它在土星的D戒指内穿过地区的地区,包装了真正的惊喜。磁场的方位角分量记录了一致的正扰动,其强度为15-25nt接近最近的方法。最接近的方法是靠近土星赤道平面,并在当地的中午狭窄地分布,并将航天器带到土星云顶的2,550千米范围内。这种扰动的建模表明它不是内部原产地,而是由外部电流产生的外部电流,使低纬度Northern电离层对低纬度的南部电离层。方位角扰动在连接到土星的冰冷环的场线上的较高纬度下降。目前系统的感觉表明电离层中场线的南部脚导致他们的北方同行。我们表明观察到的场扰动与现场对准电流一致,其强度类似于1mA /弧度,即,在极光区观察到的行星周期振荡相关电流系统中的强度相当。我们表明,离子层中的洛伦兹力从更快的移动低纬度区域带中提取势头,并将其递送至北部电离层。我们进一步示出了当场线的两端嵌入在带有低纬度热圈中的不同风速的区域流中时产生电流。风力产生的电流耗散2×10(11)W的热力,类似于该区域中太阳极端紫外线通量的输入。

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  • 来源
    《Geophysical Research Letters》 |2018年第19期|共7页
  • 作者单位

    Univ Calif Los Angeles Inst Geophys &

    Planetary Phys Los Angeles CA 90024 USA;

    Imperial Coll London Phys Dept Blackett Lab London England;

    Univ Leicester Dept Phys &

    Astron Leicester Leics England;

    Imperial Coll London Phys Dept Blackett Lab London England;

    Univ Calif Los Angeles Inst Geophys &

    Planetary Phys Los Angeles CA 90024 USA;

    Univ Leicester Dept Phys &

    Astron Leicester Leics England;

    Imperial Coll London Phys Dept Blackett Lab London England;

    Univ Calif Los Angeles Inst Geophys &

    Planetary Phys Los Angeles CA 90024 USA;

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

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