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首页> 外文期刊>Geophysical Research Letters >Observation of relativistic electron microbursts in conjunction with intense radiation belt whistler-mode waves
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Observation of relativistic electron microbursts in conjunction with intense radiation belt whistler-mode waves

机译:相对论电子爆发与强辐射带哨声波的结合

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摘要

We present multi-satellite observations of large amplitude radiation belt whistler-mode waves and relativistic electron precipitation. On separate occasions during the Wind petal orbits and STEREO phasing orbits, Wind and STEREO recorded intense whistler-mode waves in the outer nightside equatorial radiation belt with peak-to-peak amplitudes exceeding 300 mV/m. During these intervals of intense wave activity, SAMPEX recorded relativistic electron microbursts in near magnetic conjunction with Wind and STEREO. This evidence of microburst precipitation occurring at the same time and at nearly the same magnetic local time and L-shell with a bursty temporal structure similar to that of the observed large amplitude wave packets suggests a causal connection between the two phenomena. Simulation studies corroborate this idea, showing that nonlinear wave-particle interactions may result in rapid energization and scattering on timescales comparable to those of the impulsive relativistic electron precipitation.
机译:我们提出了大幅度辐射带惠斯勒模式波和相对论电子降水的多卫星观测。在风瓣轨道和STEREO移相轨道的不同场合,Wind和STEREO在夜间的赤道外辐射带记录了强烈的啸叫模式波,其峰峰值幅度超过300 mV / m。在这些强波活动的时间间隔内,SAMPEX与Wind和STEREO在近磁作用下记录了相对论性电子微暴。这种微爆现象同时发生在几乎相同的磁性局部时间,并且L壳具有与观察到的大振幅波包相似的突发时间结构,这表明这两种现象之间存在因果关系。仿真研究证实了这一想法,表明非线性波粒相互作用可能在与脉冲相对论电子沉淀相当的时间尺度上导致快速通电和散射。

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