首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Spatial relationship of nighttime medium-scale traveling ionospheric disturbances and F region field-aligned irregularities observed with two spaced all-sky airglow imagers and the middle and upper atmosphere radar
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Spatial relationship of nighttime medium-scale traveling ionospheric disturbances and F region field-aligned irregularities observed with two spaced all-sky airglow imagers and the middle and upper atmosphere radar

机译:用两个间隔开的全天空气辉成像仪和中高层大气雷达观测到的夜间中程电离层扰动与F区场对准的不规则性的空间关系

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We report simultaneous observations of medium-scale traveling ionospheric disturbances (MSTIDs) and field-aligned irregularities (FAIs) in the F region using two all-sky airglow imagers and the middle and upper atmosphere (MU) radar. MSTIDs propagating southwestward were observed simultaneously in 630-nm airglow images over Sakata (39.0°N, 139.9°E) and Shigaraki (34.9°N, 136.1°E), Japan, on the night of 16 June 2004. By using all-sky images over both sites, we estimated the altitude of the airglow layer to be 260 km by the triangulation method. During the MSTID event, FAIs in the F region were observed by making multibeam measurements with the MU radar at Shigaraki. In order to investigate the spatial relationship between the MSTIDs and FAIs, the FAIs were mapped onto the 630-nm airglow layer (altitude, 260 km) along the geomagnetic field lines. We found that FAIs with an intense (weak) signal-to-noise ratio coincided with the airglow depletion (enhancement) caused by the MSTIDs. FAI velocity obtained from a combination of the Doppler velocities on the three radar beams oscillated in the northwest-southeast direction, with an amplitude of approximately 82 m/s. The FAI velocity was northwestward (southeastward) at the airglow depletion (enhancement). The directions of the FAI velocity were consistent with those of the E x B drifts caused by the polarized electric fields associated with the MSTIDs. The northeastward polarized electric field at the airglow depletion region strengthened the background eastward effective electric field and drove the gradient drift instability generating FAIs. This might be the reason why the FAIs preferred to occur at the airglow depletion region.
机译:我们报告了使用两个全天空气辉成像仪和中高层大气(MU)雷达同时观测F区域中尺度电离层扰动(MSTID)和场对准不规则(FAI)的现象。 2004年6月16日晚上,在日本的坂田(39.0°N,139.9°E)和Shigaraki(34.9°N,136.1°E)上,在630 nm的气辉影像中同时观察到向西南传播的MSTID。根据两个站点的图像,我们通过三角测量法估计了气辉层的高度为260 km。在MSTID事件期间,通过使用Shigaraki的MU雷达进行多波束测量来观察F区的FAI。为了研究MSTID和FAI之间的空间关系,将FAI沿着地磁场线映射到630 nm气辉层(海拔260 km)上。我们发现具有强烈(微弱)信噪比的FAI与MSTID引起的气辉损耗(增强)相吻合。 FAI速度是通过在西北偏东南方向振荡的三个雷达波束上的多普勒速度组合而获得的,幅度约为82 m / s。在气辉耗尽(增强)时,FAI速度为西北(东南)。 FAI速度的方向与与MSTID相关的极化电场引起的E x B漂移的方向一致。气辉耗尽区的东北极化电场增强了背景向东有效电场,并驱动了梯度漂移的不稳定性,从而产生了FAI。这可能是为什么FAI首选出现在气辉耗尽区域的原因。

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