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Global Pc5 pulsations observed at unusually low L during the great magnetic storm of 24 March 1991

机译:全球Pc5脉动观测异常低L在1991年3月24日的磁暴

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Using CANOPUS, GREENLAND, IMAGE, SAMNET, and 210 MM ground-based magnetometer array data, we examine the global characteristics of ULF waves during the onset day of the great magnetic storm of 24 March 1991. We focus on the main phase in the period of decreasing Dst and investigate the characteristics of discrete frequency Pc5 pulsations. Pc5 pulsations with multiple discrete spectral peaks including a 2.8 mHz pulsation were seen at 0815–0915 UT, and a monochromatic 1.9 mHz wave appeared at 1010–1110 UT. Also, a very monochromatic and large-amplitude 1.7 mHz wave was observed at 1200–1340 UT across a wide range of dayside local times and at unusually low latitudes. We have analyzed the amplitude and phase relationships of waves at these frequencies. The 2.8 mHz, 1.9 mHz, and 1.7 mHz spectral peaks have maximum amplitudes at L = 3.6, L = 4, and L = 4.3, respectively, and exhibit the characteristic features of field line resonances (FLRs). The discrete mHz frequencies are consistent with some of the discrete peaks seen by Samson et al. (1992) and support the hypothesis of the existence of MHD cavity or waveguide modes in the magnetosphere. However, our results show evidence for the penetration of ULF wave power in the Pc5 band to much lower L-values than normal, suggesting a significant reduction of the local Alfvén eigenfrequency continuum as compared to nonstorm times. This may have considerable significance for the interaction between ULF waves and MeV electrons in the outer radiation belt during storms.
机译:使用老人星,格陵兰岛,形象,SAMNET, 210毫米地面磁力仪阵列数据,我们检查全球ULF波的特征大磁暴期间爆发的一天1991年3月24日。期间减少Dst和调查Pc5离散频率的特征脉动。光谱峰值包括2.8 mHz脉动在0815 - 0915 UT,单色1.9 mHz波出现在1010 - 1110 UT。单色和大幅度1.7兆赫波在1200 - 1340 UT观察大范围的光面的当地时间和不同寻常的低纬度。在这些波的相位关系频率。光谱峰值最大振幅L =3.6、L = 4和L = 4.3,分别展览场线的特征共振(flr)。和一些离散的山峰是一致的吗参孙et al。(1992)和支持假设磁流体动力腔或存在的在磁层波导模式。我们的结果表明渗透的证据ULF波动力Pc5乐队的低得多L-values比正常,表明一个重要减少当地的阿尔芬本征频率连续nonstorm相比。有相当大的意义ULF波和兆电子伏电子之间的相互作用在风暴期间外辐射带。

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