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Analysis of High-Latitude lonospheric Processes During HSS and CME-Induced Geomagnetic Storms

机译:Hss和CmE诱发地磁暴期间高纬度高压过程分析

摘要

For the first time we compared ionospheric effects of HSS and CME-driven storms at high-latitudes. There were similarities and also differences observed in the development of the storms. (1) Both type of storms exhibited clear negative phase, which resulted in an increase of TOI-breaking-down into patches and a decrease in patch formation in general throughout the Greenland sector. The negative phase developed as the PCN-index started to increase indicated energy input into the polarcap. (2) The rate of PCN increase was clearly different for the two types of storms. (3) The impact of the physical processes responsible for the negative phase have less pronounced impact on the diurnal TEC variations than on patch formation. We also investigated and assessed storm influences on airborne navigation at high-latitudes in order to determine the possible cause of the radio communication disturbances. This effort may lead us to a better understanding of the phenomenon and might help develop communication hardware that is more resistant to such effects.
机译:我们首次比较了高纬度HSS和CME驱动的风暴对电离层的影响。在风暴的发展过程中既有相似之处,也有差异。 (1)两种类型的风暴都表现出明显的负相位,这导致整个格陵兰地区的TOI分解成斑块的数量增加,而斑块的形成数量减少。随着PCN指数开始增加,指示相输入到Polarcap的能量开始出现负相。 (2)两种风暴的PCN增长率明显不同。 (3)负相的物理过程影响对昼夜TEC的影响不如斑块形成明显。我们还调查并评估了风暴对高纬度空中航行的影响,以确定可能造成无线电通信干扰的原因。这项工作可能使我们对这种现象有了更好的了解,并可能有助于开发更能抵抗这种影响的通信硬件。

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