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Effects of Substorms on High-Latitude Upper Thermospheric Winds

机译:亚暴高纬度地区上的影响Thermospheric风

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During magnetospheric substorms, high-latitude ionospheric plasma convection is known to change dramatically. How upper thermospheric winds change, however, has not been well understood, and conflicting conclusions have been reported. Here, we study the effect of substorms on high-latitude upper thermospheric winds by taking advantage of a chain of scanning Doppler imagers (SDIs), THEMIS all-sky imagers (ASIs), and the Poker Flat incoherent scatter radar (PFISR). SDIs provide mosaics of wind dynamics in response to substorms in two dimensions in space and as a function of time, while ASIs and PFISR concurrently monitor auroral emissions and ionospheric parameters. During the substorm growth phase, the classical two-cell global circulation of neutral winds intensifies. After substorm onset, the zonal component of these winds is strongly suppressed in the midnight sector, whereas away from the midnight sector two-cell circulation of winds is enhanced. Both pre and postonset enhancements are ≥100 m/s above the quiet-time value, and postonset enhancement occurs over a broader latitude and local-time area than preonset enhancement. The meridional wind component in the midnight and postmidnight sectors is accelerated southward to subauroral latitudes. Our findings suggest that substorms significantly modify the upper-thermospheric wind circulation by changing the wind direction and speed and therefore are important for the entire magnetosphere-ionosphere-thermosphere system.
机译:在磁层亚暴的,高纬度地区电离层等离子体对流改变巨大的变化。变化,然而,并没有被很好的理解,已报告和相互矛盾的结论。在这里,我们研究亚暴的的影响高纬度地区上层thermospheric风了利用扫描链多普勒成像系统忒弥斯(sdi),全天成像系统(网络),和扑克平非相干散射雷达(PFISR)。提供风动力响应的马赛克亚暴,在二维空间时间的函数,而网络多媒体和PFISR同时监控极光排放和电离层参数。增长阶段,经典的两个全球性的循环的中性风的加剧。亚暴,纬向分量风强烈抑制在午夜部门,而远离午夜的部门两个循环风的增强。前和postonset增强≥100 m / s以上安静的时间值,postonset增强发生在一个更广泛的纬度和本地时间面积比preonset增强。在午夜和postmidnight风组件部门是subauroral加速向南纬度。大幅修改upper-thermospheric风通过改变风的方向和循环速度,因此对整个很重要magnetosphere-ionosphere-thermosphere系统。

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