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On the generation of enhanced sunward convection and transpolar aurora in the high-latitude ionosphere by magnetic merging

机译:上一代的增强朝着太阳对流经过北极的极光在高纬度地区电离层由磁合并

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The IMAGE Wideband Imaging Camera (WIC) instrument observed the duskside development of an oval-aligned transpolar auroral arc (TPA) in the Northern Hemisphere (NH) on 16 December 2001 during strong IMF ∣B∣ ~ 18 nT and a generally steady ~56° clock angle (positive IMF B y and B z ). Observational evidence suggests that the dayside part of the duskside TPA formed due to quasi-continuous merging between the IMF and the lobe magnetic field tailward of the cusp while the nightside part is associated with the Harang discontinuity. The low-altitude CHAMP satellite confirms an upward northward IMF B z (NBZ) field-aligned current (FAC) over the dayside TPA while associating a downward NBZ current with the region of diminished WIC emissions in between the auroral oval and the TPA. DMSP F14 suggests that the dayside region of the downward NBZ current coincides with precipitating magnetosheath-like ions of reversed energy-latitude dispersion consistent with high-latitude reconnection. SuperDARN observes enhanced ionospheric sunward flows generally centered between the oppositely directed NBZ currents. We associate these flows with a clockwise lobe convection vortex and the dayside part of the TPA. The nightside TPA, however, is related to stagnant or antisunward flow and the upward FAC region of the Harang discontinuity. Cluster observations confirm the simultaneous presence of rotational discontinuities across the duskside magnetopause with changes in the magnetosheath plasma velocity that indicate an active merging region poleward of Cluster. A global MHD simulation generates sunward flow between a pair of opposite FACs on either side of a lobe reconnection site near (X, Y, Z) GSM = (?4.7, 5.4, 10.2) R E thus conforming with Cluster and SuperDARN expectations. The sense of these FACs agrees with the low-altitude NBZ observations.
机译:图像宽带成像相机(WIC)工具观察的duskside发展oval-aligned经过北极的极光弧(TPA)北半球(NH) 2001年12月16日在强大的国际货币基金组织(IMF)∣B∣~ 18元,一般稳定~ 56°时钟角(积极的国际货币基金组织(IMF) y, B z). 的光面duskside TPA形成原因的一部分准连续国际货币基金组织和之间的合并叶磁场tailward的尖端阴面的部分是与Harang有关不连续。证实了一个向上向北国际货币基金组织(IMF) B z (NBZ)在的光面TPA field-aligned电流(FAC)同时将向下NBZ电流与地区之间的WIC排放减少极光椭圆和TPA。向下的光面地区NBZ电流恰逢沉淀magnetosheath-like离子的逆转energy-latitude分散符合高纬度地区重新连接。SuperDARN观察增强电离层朝着太阳一般集中在相反的位置之间的流动导演NBZ电流。顺时针叶对流涡和的光面TPA的一部分。然而,停滞不前或antisunward有关流和向上的FAC Harang区域不连续。同时出现的旋转不连续的duskside磁层与磁鞘等离子体速度的变化表明积极向极合并区域的集群。朝着太阳之间流动的一对相反的流式细胞仪两边的叶重联(X,附近Y, Z) GSM R = (? 4.7, 5.4, 10.2) E从而符合集群和SuperDARN预期。这些流式细胞仪同意低空的感觉NBZ观察。

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