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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Equatorial plasma bubble zonal velocity using 630.0 nm airglow observations and plasma drift modeling over Ascension Island
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Equatorial plasma bubble zonal velocity using 630.0 nm airglow observations and plasma drift modeling over Ascension Island

机译:赤道区域速度使用等离子体泡沫630.0 nm大气光观察和等离子体漂移建模在阿森松岛

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摘要

We present OI (630.0nm) airglow image data from Ascension Island(geographic: 7.9S, 14.4W; dip latitude: 16S)in the southern Atlantic Ocean taken with the Utah State University all-sky CCD camera during 20 March to 7 April 1997 in order to study plasma bubbles occurring in the low-latitude nighttime ionosphere. The initial plasma bubble onset occurs in the early evening hours at ~19:15-20:00 LST and is followed by eastward propagation with an average speed of ~90-120m/s prior to local midnight, rapidly decreasing around the midnight and postmidnight periods. The Ascension results are compared with similar observations from Christmas Island in order to examine the longitudinal variations of EPB development and propagation. The observed EPB velocities from Ascension Island are also compared with the results of a plasma drift model. In a case study during the night of 4-5 April, the velocity reveals unusual latitudinal shear, up to 0.12m/s/km, with a reversal to westward flow at low latitudes while eastward flow is maintained at higher latitudes. Consequently, the bubble rotates counterclockwise and tilts eastward, significantly away from alignment with the geomagnetic field lines. The westward reversal of the drift motion near the geomagnetic equator is most likely the result of a reversal in the F region dynamo or from a large increase in the altitude of the shear node in the F region plasma drift at the geomagnetic equator.
机译:我们提出OI大气光图像数据(630.0海里)阿森松岛(地理:7.9,14.4 w;纬度:16 s)在南大西洋犹他州立大学的全天CCD拍摄的相机在3月20日1997年4月7日研究等离子体泡沫的发生低纬度夜间电离层。等离子体泡沫爆发发生在傍晚小时~ 19:15-20:00 LST,紧随其后向东传播的平均速度~ 90 - 120 m / s当地午夜之前,迅速减少在午夜和postmidnight期。类似的观察从圣诞岛为了检查的纵向变化EPB的发展和传播。从阿森松岛也速度而等离子体漂移的结果模型。4月,速度显示不同寻常的纬度剪切,0.12 m / s /公里,与逆转在低纬度地区,向东向西流流保持在高纬度地区。因此,泡沫逆时针旋转向东倾斜,大大远离对齐与地磁场线。西附近的漂移运动逆转地磁赤道是最有可能的结果逆转F地区发电机或从一个大增加剪切节点的高度在地磁赤道F区等离子体漂移。

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