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Energetic, relativistic, and ultrarelativistic electrons: Comparison of long-term VERB code simulations with Van Allen Probes measurements

机译:精力充沛,相对论,ultrarelativistic电子:动词的比较长期的代码模拟与范艾伦辐射探测器测量

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摘要

In this study, we compare long-termsimulations performed by the Versatile Electron Radiation Belt (VERB) code with observations from the Magnetic Electron Ion Spectrometer and Relativistic Electron-Proton Telescope instruments on the Van Allen Probes satellites. The model takes into account radial, energy, pitch angle and mixed diffusion, losses into the atmosphere, and magnetopause shadowing. We consider the energetic (>100 keV), relativistic (~0.5–1MeV), and ultrarelativistic (>2MeV) electrons. One year of relativistic electron measurements (μ=700 MeV/G) from1 October 2012 to 1 October 2013 are well reproduced by the simulation during varying levels of geomagnetic activity. However, for ultrarelativistic energies (μ = 3500 MeV/G), the VERB code simulation overestimates electron fluxes and phase space density. These results indicate that an additional loss mechanism is operational and efficient for these high energies. The most likely mechanism for explaining the observed loss at ultrarelativistic energies is scattering by the electromagnetic ion cyclotron waves.
机译:在这项研究中,我们比较long-termsimulations执行的多功能电子辐射带(动词)代码的观察磁电子离子谱仪和相对论Electron-Proton望远镜范艾伦辐射探测卫星仪器。该模型考虑径向、能源、螺旋角和混合扩散,损失大气层和磁层阴影。考虑到精力充沛(> 100 keV),相对论(1 ~ 0.5兆电子伏),ultrarelativistic(> 2兆电子伏)电子。测量(μ= 700伏/ G)从2012年10月2013年10月1复制的模拟在不同级别的地磁活动。(μ= 3500伏/ G),动词代码仿真高估了电子通量和相空间密度。机制是操作和额外的损失这些高能量效率。可能的机制来解释观察到的损失在ultrarelativistic能量散射电磁离子回旋波。

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