首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Relative Contribution of ULF Waves and Whistler-Mode Chorus to the Radiation Belt Variation During the May 2017 Storm
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Relative Contribution of ULF Waves and Whistler-Mode Chorus to the Radiation Belt Variation During the May 2017 Storm

机译:ULF波和的相对贡献Whistler-Mode合唱辐射带变化在2017年5月风暴

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摘要

We investigate the time and location where ULF waves and whistler-mode chorus contributed to the net flux enhancement of relativistic electrons during the magnetic storm of May 2017. During the early recovery phase, both ULF and chorus waves contribute to the enhancement of relativistic electron fluxes, but ULF waves play roles of the inward diffusion. During the late recovery phase, both Van Allen Probe-B and Arase show that whistler-mode chorus contributes to the flux enhancement confined in the L-value. The CRCM coupled with BATS-R-US simulation qualitatively reproduces the global evolution of ULF waves. Although the electron flux is underestimated by the simulation, this study reveals a large anisotropy of hot electrons in the region where whistler-mode chorus waves were actually observed by satellites. In addition, the estimated magnetic field curvature on the dayside is small during the recovery phase. Furthermore, we investigate the control of wave evolution. Both observations and the simulation suggest that the observed ULF waves in the frequency range of ~2-5 mHz are excited by the enhancement of the solar wind dynamic pressure. Observations also indicate that whistler-mode chorus on the nightside is predominantly excited by hot electrons with temperature anisotropy, whereas the dayside chorus is enhanced by the change of the magnetic field line configuration. The estimated spatial distributions of electron anisotropy and magnetic field curvature provide an explanation for the presence of enhanced whistler-mode chorus in the dusk sector, which is far from the usual location of wave generation.
机译:ULF我们调查的时间和地点海浪和whistler-mode合唱了的净通量提高相对论性电子在2017年5月的磁暴。早期恢复阶段,合唱和ULF波有助于增强相对论电子通量,但ULF波扮演的角色向内扩散。范艾伦辐射探测器b和Arase显示whistler-mode合唱导致通量增强在l值。再加上BATS-R-US模拟定性繁殖的全球进化ULF波。虽然电子通量被低估了摘要本研究模拟,揭示了一个大各向异性热电子在该地区whistler-mode合唱波实际上是观察通过卫星。磁场的光面小曲率在经济复苏阶段。研究波的控制进化。观测和模拟表明,观察ULF波的频率范围~ 2 - 5mHz太阳能的增强而兴奋不已风动态压力。whistler-mode合唱在阴面主要由热电子兴奋温度各向异性,而的光面合唱是增强磁场的变化行配置。电子分布的各向异性和磁性场曲率提供一个解释增强whistler-mode合唱的存在黄昏行业还远远没有通常的位置波的一代。

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