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Oscillations of the equatorward boundary of the ion auroral oval – radar observations

机译:离子极光椭圆的赤道边界的振荡-雷达观测

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Three SuperDARN radars in the afternoon-midnight sector of the auroral oval detected a boundary oscillation, originating near ~1800 MLT sector. Analysis of the phase of the oscillations measured in three meridians indicates that the disturbance has a longitudinally (azimuthally) isolated source and away from which it propagates. The eastward and westward phase speeds are 2.6 and 3.6 km/s respectively and the period is roughly 28 minutes. An examination of the geo-synchronous magnetic field inclination also revealed oscillations similar to the oscillations of the boundary. Solar wind and IMF conditions were steady during the period except for variations of the IMF By component. The IMF By component showed variations similar to the oscillations in the boundary and the geo-synchronous magnetic field inclination. During reduced and negative IMF By, the boundary was moving equatorward, while during increased or positive IMF By it was moving poleward. The variations in the magnetic field inclination measured at geosynchronous orbit by the GOES satellites were consistent with these boundary motions: decreases (more stretched) and increases (more dipolar) in the inclination corresponded to equatorward and poleward moving boundaries, respectively. Polar cap convection also showed changes in the direction of the convection in response to the change in the IMF By component. Observed oscillation of the boundary can be explained by stretching of the tail field lines due to asymmetric merging associated with changes in the By component of the interplanetary magnetic field.
机译:在极光椭圆形午后至午夜扇形区域中的三个SuperDARN雷达检测到边界振荡,起源于〜1800 MLT扇形区域。对在三个子午线上测得的振荡相位的分析表明,该扰动具有纵向(方位角)隔离的源,并且远离该源传播。东向和西向速度分别为2.6 km / s和3.6 km / s,周期约为28分钟。对地球同步磁场倾斜度的检查也显示出与边界振荡相似的振荡。除IMF By组件的变化外,此期间太阳风和IMF条件稳定。 IMF By分量显示出类似于边界振荡和地球同步磁场倾斜的变化。当IMF By减小和为负时,边界向赤道移动;当IMF By增大或为正时,边界向极移。 GOES卫星在地球同步轨道上测得的磁场倾角变化与这些边界运动是一致的:倾角的减小(更多地伸展)和增加(更多的偶极)分别对应于赤道和极向运动边界。极帽对流还显示出对流方向的变化,以响应IMF By分量的变化。观察到的边界振荡可以通过由于与行星际磁场的By分量的变化相关的不对称合并而导致的尾场线的拉伸来解释。

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