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首页> 外文期刊>Geomagnetism and aeronomy >Injection of Relativistic Electrons into the Internal Magnetosphere during Magnetic Storms: Connection with Substorms
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Injection of Relativistic Electrons into the Internal Magnetosphere during Magnetic Storms: Connection with Substorms

机译:在磁暴期间将相对论电子注入内部磁层:与亚暴的联系

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The connection between rapid increases in the intensity of electrons with energies >0.3 MeV and magnetospheric substorms was studied for the first time by measurements of energetic electrons on the low- orbit SERVIS-1 satellite. In addition to the well-known process of radial diffusion detected at the recovery phase, the increases during a period of time no longer than 1.5 h at the main phase of six magnetic storms in a channel of 0.3-1.7 MeV (in three of them, in a channel of 1.7-3.4 MeV) were measured. An analysis of auroral zone magnetograms demonstrated that the increases occurred at the instant of magnetospheric sub- storm activation. A conclusion is made that the increases are caused by the radial injection of electrons by a pulse electric field induced during substorm activations. Pulse injections are shown to be one of the main mechanisms of electron radiation belt completion in the inner magnetosphere and, in combination with mod- erate radial diffusion, to be responsible for the appearance of large fluxes of energetic electrons ("killers") in the magnetosphere after magnetic storms.
机译:通过测量低轨道SERVIS-1卫星上的高能电子,首次研究了能量> 0.3 MeV的电子强度的快速增加与磁层亚暴之间的联系。除了在恢复阶段检测到的众所周知的径向扩散过程外,在0.3-1.7 MeV的通道中的六个磁暴的主要阶段中,在不超过1.5 h的时间内增加的时间(其中三个) ,在1.7-3.4 MeV的通道中进行了测量。对极光区磁图的分析表明,这种增加发生在磁层次风暴激活的瞬间。得出的结论是,这种增加是由子风暴激活期间感应的脉冲电场引起的电子径向注入引起的。脉冲注入被证明是内部磁层中电子辐射带完成的主要机制之一,并且与适度的径向扩散相结合,是导致高能电子通量(“杀手”)出现的原因。磁暴后的磁层。

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