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Cassini observations of ion and electron beams at Saturn and their relationship to infrared auroral arcs

机译:卡西尼号观测离子和电子束土星和红外极光的关系弧

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We present Cassini Visual and Infrared Mapping Spectrometer observations of infrared auroral emissions from the noon sector of Saturn's ionosphere revealing multiple intense auroral arcs separated by dark regions poleward of the main oval. The arcs are interpreted as the ionospheric signatures of bursts of reconnection occurring at the dayside magnetopause. The auroral arcs were associated with upward field-aligned currents, the magnetic signatures of which were detected by Cassini at high planetary latitudes. Magnetic field and particle observations in the adjacent downward current regions showed upward bursts of 100-360 keV light ions in addition to energetic (hundreds of keV) electrons, which may have been scattered from upward accelerated beams carrying the downward currents. Broadband, upward propagating whistler waves were detected simultaneously with the ion beams. The acceleration of the light ions from low altitudes is attributed to wave-particle interactions in the downward current regions. Energetic (600 keV) oxygen ions were also detected, suggesting the presence of ambient oxygen at altitudes within the acceleration region. These simultaneous in situ and remote observations reveal the highly energetic magnetospheric dynamics driving some of Saturn's unusual auroral features. This is the first in situ identification of transient reconnection events at regions magnetically conjugate to Saturn's magnetopause.
机译:我们现在卡西尼视觉和红外映射光谱仪观测的红外极光土星的排放从中午部门电离层揭示多个强烈的极光黑暗的地区向极弧分离的主要的椭圆形。电离层的重联的签名发生的光面磁层。极光弧与上升有关field-aligned电流,磁签名由卡西尼发现的高行星纬度。观察邻向下电流区域显示向上的100 - 360 keV光离子除了精力充沛(数百keV)电子,可能是分散的向上加速梁向下电流。波与离子同时检测梁。低海拔归因于波粒向下的当前地区的交互。精力充沛(600 keV)氧离子也检测,表明环境的存在氧气在海拔在加速度地区。观测揭示了高能土星的磁性层的动力驱使一些人不寻常的极光的特性。原地瞬态重新连接的识别活动区域磁共轭土星磁层。

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