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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Plasma Flow in the North‐South Aligned Discrete Aurora Equatorward of the Cusp
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Plasma Flow in the North‐South Aligned Discrete Aurora Equatorward of the Cusp

机译:等离子体流在北方还是南方离散相一致极光朝赤道方向的尖端

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On the equatorward side of the dayside cusp there often appear diffuse auroras. In this paper, we report north‐south aligned discrete aurora events and show the spatial relationships between the auroras and the plasma flow. Several events of the north‐south aligned discrete auroral structures were identified using an all‐sky imager at Longyearbyen, Svalbard, during the recovery of a moderately disturbed period on 8 December 2013. During a brief interval of the moderately disturbed period, the cusp shifted to higher latitudes; as a result, the field‐aligned beam of the EISCAT Svalbard Radar (ESR) passed through the northern portion of the north‐south aligned auroral structures. Simultaneous observations from the all‐sky imager and ESR reveal that enhancements in ion temperature (caused by fast ion flow) occurred near the eastward and westward boundaries of the north‐south aligned auroral structures. However, within the region of the most enhanced aurora, the ion temperature enhancements were moderately suppressed. These features indicate that the ion flow slows down in the region of electron precipitation responsible for north‐south aligned auroral structures. We can quantitatively interpret the slowdown of the flow as the reduction of the electric field due to the polarization effect in the north‐south aligned region of the increased Pedersen conductivity. It thus appears that the magnetospheric source of the north‐south aligned discrete auroras is a limited area embedded in the region of plasma flow toward the dayside magnetopause.
机译:朝赤道方向一侧的光面的尖端经常出现极光。报告北还是南离散极光事件保持一致和显示之间的空间关系极光和等离子体流。北还是南离散极光保持一致结构被确定使用所有的天空成像仪在朗伊尔城,斯瓦尔巴特群岛,在恢复适度干扰周期8日2013年12月。中度干扰期间,尖端转向高纬度地区;梁的EISCAT斯瓦尔巴特群岛雷达(ESR)通过通过北北还是南的一部分极光结构保持一致。从全天空成像仪和ESR观测显示,增强离子温度(快离子引起的流)附近发生向东和向西边界的量南北极光结构保持一致。在该地区的增强的极光,离子温度增强是适度的抑制。流动减缓该地区的电子降水负责北还是南对齐极光的结构。解释经济放缓的流减少由于电场极化效应在北方还是南方对齐皮德森电导率增加的区域。因此看来的磁性层的来源北还是南离散极光是保持一致有限的区域嵌入在等离子体的地区朝的光面流磁层。

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