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Assessing the global Alfvén wave power flow into and out of the auroral acceleration region during geomagnetic storms

机译:评估地磁暴期间全球Alfvén波功率流入和流出极光加速区域的情况

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摘要

Geomagnetic storms are large space weather events with potentially tremendous societal implications. During these storms, the transfer of energy from the solar wind into geospace is largely increased, leading to enhanced energy flow and deposition within the magnetosphere and ionosphere. While various energy forms participate, the rate of total Alfvén wave energy flowing into the auroral acceleration region—where the magnetosphere and ionosphere couple—has not been quantified. Here, we report a fourfold increase in hemispherical Alfvénic power (from 2.59 to 10.05 GW) over a largely expanded oval band covering all longitudes and latitudes between 50° and 85° during the main storm phase compared with nonstorm periods. The Poynting flux associated with individual Alfvén waves reached values of up to about 0.5 W/m2 (mapped to ionospheric altitude). These results demonstrate that Alfvén waves are an important component of geomagnetic storms and associated energy flow into the auroral acceleration region.
机译:地磁风暴是具有潜在的巨大社会影响的大空间天气事件。在这些暴风雨期间,能量从太阳风到地球空间的传递大大增加,导致磁层和电离层内的能量流动和沉积增加。尽管各种形式的能量参与其中,但流向极光加速区域(磁层和电离层耦合的区域)的Alfvén波能的总比率尚未确定。在这里,我们报告说,在主暴风期期间,覆盖50°至85°之间所有经度和纬度的所有经度和纬度的半球形Alfvénic功率(从2.59 GW增至10.05 GW)增加了四倍,与非暴风雨时期相比。与单个Alfvén波相关的珀因廷通量达到约0.5 W / m 2 的值(映射到电离层高度)。这些结果表明,Alfvén波是地磁风暴及其相关能量流入极光加速区域的重要组成部分。

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