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Energetic particle precipitation into the middle atmosphere triggered by a coronal mass ejection

机译:高能粒子沉淀到中间气氛由日冕物质抛射

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Precipitation of relativistic electrons into the atmosphere has been suggested as the primary loss mechanism for radiation belt electrons during large geomagnetic storms. Here we investigate the geographical spread of precipitation as a result of the arrival of a coronal mass ejection (CME) on 21 January 2005. In contrast to previous statistical studies we provide one of the first attempts to describe the geographic and temporal variability of energetic particle precipitation on a global scale using an array of instruments. We combine data from subionospheric VLF radio wave receivers, the high-altitude Miniature Spectrometer (MINIS) balloons, riometers, and pulsation magnetometers during the first hour of the event. There were three distinct types of energetic electron precipitation observed, one globally, one on the dayside, and one on the nightside. The most extensively observed form of precipitation was a large burst starting when the CME arrived at the Earth, where electrons from the outer radiation belt were lost to the atmosphere over a large region of the Earth. On the dayside of the Earth (10–15 MLT) the CME produced a further series of precipitation bursts, while on the nightside dusk sector (~20 MLT) a continuous precipitation event lasting ~50 min was observed at 2.5 < L < 3.7 along with Pc 1–2 pulsations observed with a ground-based magnetometer. These observations suggest that the generation of energetic electron precipitation at the inner edge of the outer radiation belt from electromagnetic ion cyclotron (EMIC) wave scattering into the loss cone is the most direct evidence to date connecting EMIC activity and energetic precipitation.
机译:降水的相对论性电子大气被建议作为主要的损失在辐射带电子的机制大地磁风暴。地理分布的降水到来的日冕物质抛射(CME)2005年1月21日。我们提供的第一个统计研究试图描述地理和时间高能粒子降水的变化在全球范围内使用数组的工具。我们把数据从subionospheric甚低频收音机波接收器,高空迷你型光谱仪(微型计算机)气球,宇宙噪声测量器脉动磁力计在第一个小时的该事件。高能电子降水观察,一个在全球范围内,一个的光面上,一个上阴面。降水量大破灭时开始CME到达地球时,电子从的地方外辐射带的地球的大气在一个大区域。地球的光面(10 - 15 MLT)芝加哥商品交易所产生一系列进一步的降水破裂,在阴面黄昏部门(~ 20MLT)连续降水事件持久~ 50分钟观察随着Pc 2.5 L < < 3.71 - 2脉动观测到地面磁强计。代的高能电子降水内部边缘外辐射带电磁离子回旋波位的散射损失锥是最直接的证据连接位的活动和约会精力充沛的降水。

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