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首页> 外文期刊>The Astrophysical journal >STRONG SOLAR WIND DYNAMIC PRESSURE PULSES: INTERPLANETARY SOURCES AND THEIR IMPACTS ON GEOSYNCHRONOUS MAGNETIC FIELDS
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STRONG SOLAR WIND DYNAMIC PRESSURE PULSES: INTERPLANETARY SOURCES AND THEIR IMPACTS ON GEOSYNCHRONOUS MAGNETIC FIELDS

机译:强太阳风动力脉冲:行星际源及其对地球同步磁场的影响

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In this investigation, we first present a statistical result of the interplanetary sources of very strong solar wind dynamic pressure pulses (DPPs) detected by WIND during solar cycle 23. It is found that the vast majority of strong DPPs reside within solar wind disturbances. Although the variabilities of geosynchronous magnetic fields (GMFs) due to the impact of positive DPPs have been well established, there appears to be no systematic investigations on the response of GMFs to negative DPPs. Here, we study both the decompression effects of very strong negative DPPs and the compression from strong positive DPPs on GMFs at different magnetic local time sectors. In response to the decompression of strong negative DPPs, GMFs on the dayside near dawn and near dusk on the nightside, are generally depressed. But near the midnight region, the responses of GMF are very diverse, being either positive or negative. For part of the events when GOES is located at the midnight sector, the GMF is found to abnormally increase as the result of magnetospheric decompression caused by negative DPPs. It is known that under certain conditions magnetic depression of nightside GMFs can be caused by the impact of positive DPPs. Here, we find that a stronger pressure enhancement may have a higher probability of producing the exceptional depression of GMF at the midnight region. Statistically, both the decompression effect of strong negative DPPs and the compression effect of strong positive DPPs depend on the magnetic local time, which are stronger at the noon sector.
机译:在这项研究中,我们首先介绍了WIND在太阳周期23期间探测到的非常强的太阳风动压力脉冲(DPP)的行星际源的统计结果。发现大多数强DPP都位于太阳风扰动内。尽管已经很好地确定了由于正DPP的影响而引起的地球同步磁场(GMF)的变化,但似乎还没有关于GMF对负DPP响应的系统研究。在这里,我们研究了非常强的负DPP的解压缩效果和强正DPP对不同磁局部时间扇区的GMF的压缩。为了响应强负DPP的减压,通常会在白天接近黎明的黎明和夜晚接近黄昏的GMF处于压抑状态。但是在午夜附近,GMF的反应非常多样,要么是正面的,要么是负面的。对于GOES位于午夜区域的部分事件,由于负DPP引起的磁层减压,发现GMF异常增加。众所周知,在某些条件下,夜间GMF的磁性降低可能是由正DPP的影响引起的。在这里,我们发现较强的压力增强可能会在午夜区域产生更高的GMF异常降低可能性。从统计上讲,强负DPP的减压效果和强正DPP的压缩效果均取决于磁局部时间,该磁局部时间在中午时分更强。

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