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首页> 外文期刊>Journal of Astrophysics and Astronomy >A new technique for understanding magnetosphere-ionosphere coupling using directional derivatives of SuperDARN convection flow
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A new technique for understanding magnetosphere-ionosphere coupling using directional derivatives of SuperDARN convection flow

机译:一种使用Superdarn对流流向定向衍生物了解磁层电离层耦合的新技术

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The purpose of this paper is to present and evaluate a new technique to better understand ionospheric convection and it's magnetospheric drivers using convection maps derived from the Super Dual Auroral Radar Network (SuperDARN). We postulate that the directional derivative of the SuperDARN ionospheric convection flow can be used as a technique for understanding solar wind-magnetosphere-ionosphere coupling by identifying regions of strong acceleration/deceleration of plasma flow associated with drivers of magnetospheric convection such as magnetic reconnection. Thus, the technique may be used to identify the open-closed magnetic field line boundary (OCB) in certain circumstances. In this study, directional derivatives of the SuperDARN ionospheric convection flow over a four and a half hour interval on Nov. 04, 2001, is presented during which the interplanetary magnetic field was predominantly southward. At each one-minute time point in the interval the positive peak in the directional derivative of flow is identified and evaluated via comparison with known indicators of the OCB including the poleward boundary of ultraviolet emissions from three FUV detectors onboard the IMAGE spacecraft as well as the SuperDARN spectral widths. Good comparison is found between the location of the peak in the directional derivative of SuperDARN flow and the poleward boundary of ultraviolet emissions confirming that acceleration of ionospheric plasma flow is associated with magnetic reconnection and the open-closed boundary.
机译:本文的目的是展示和评估一种使用超级双极光雷达网络(Superdarn)的对流图更好地了解电离层对流和IT的磁体驱动器的新技术。我们假设超大电离层对流流程的定向衍生物可以用作理解太阳风磁层电离层耦合的技术,通过识别与磁体重新连接的磁体对流驱动器相关的等离子体流的强加加速/减速区域。因此,该技术可用于在某些情况下识别开闭磁场线边界(OCB)。在这项研究中,提出了2001年11月04日期间隔404和半小时间隔的超大电离层对流流量的定向衍生物,在此期间,截然磁场主要是向南的。在间隔中的每个一分钟时间点,通过与来自图像航天器的三个FUV探测器的紫外线探测器的极向边界以及图像航天器的三个FUV探测器的极向边界以及来自图像航天器的紫外线的极端边界,确定和评估流程中的正峰值。 SuperDarn光谱宽度。在超级杆流动方向导数的峰值位置之间发现良好的比较,以及确认电离层等离子体流的加速度与磁重新连接和开孔边界相关联的紫外线的极端边界。

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