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A New Population of Ultra-Relativistic Electrons in the Outer Radiation Zone

机译:一个新的人口Ultra-Relativistic电子外辐射带

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摘要

Van Allen Probes measurements revealed the presence of the most unusual structures in the ultrarelativistic radiation belts. Detailed modeling, analysis of pitch angle distributions, analysis of the difference between relativistic and ultra-realistic electron evolution, along with theoretical studies of the scattering and wave growth, all indicate that electromagnetic ion cyclotron (EMIC) waves can produce a very efficient loss of the ultra-relativistic electrons in the heart of the radiation belts. Moreover, a detailed analysis of the profiles of phase space densities provides direct evidence for localized loss by EMIC waves. The evolution of multi-MeV fluxes shows dramatic and very sudden enhancements of electrons for selected storms. Analysis of phase space density profiles reveals that growing peaks at different values of the first invariant are formed at approximately the same radial distance from the Earth and show the sequential formation of the peaks from lower to higher energies, indicating that local energy diffusion is the dominant source of the acceleration from MeV to multi- MeV energies. Further simultaneous analysis of the background density and ultra-relativistic electron fluxes shows that the acceleration to multi-MeV energies only occurs when plasma density is significantly depleted outside of the plasmasphere, which is consistent with the modeling of acceleration due to chorus waves.
机译:范-艾伦探针测量了最不寻常的结构的存在ultrarelativistic辐射带。螺旋角分布的建模,分析,分析相对论的区别和真实电子进化散射的理论研究波增长,表明电磁离子回旋波(位)可以产生一个非常ultra-relativistic效率损失电子辐射带的核心。此外,一个详细的资料分析相空间密度提供了直接证据位的局部损失的波。multi-MeV通量显示了戏剧性的和非常突然增强的电子风暴。在不同的值表明日益增长的高峰第一个在大约不变的形成相同的径向距离地球并显示顺序形成的峰值低更高的能量,这表明当地的能源扩散的主要来源加速度从兆电子伏到多兆电子伏能量。同时进一步分析背景密度和ultra-relativistic电子通量表明,加速度multi-MeV能量只发生在等离子体密度显著耗尽以外的等离子体层,符合加速度的建模合唱波。

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