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Competing source and loss mechanisms due to wave-particle interactions in Earth's outer radiation belt during the 30 September to 3 October 2012 geomagnetic storm

机译:竞争来源和损失机制由于地球外辐射带的波粒子相互作用,于9月30日至10月3日地质磁风暴

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摘要

Abstract Drastic variations of Earth’s outer radiation belt electrons ultimately result from various competing source, loss, and transport processes, to which wave-particle interactions are critically important. Using 15 spacecraft including NASA’s Van Allen Probes, THEMIS, and SAMPEX missions and NOAA’s GOES and POES constellations, we investigated the evolution of the outer belt during the strong geomagnetic storm of 30 September to 3 October 2012. This storm’s main phase dropout exhibited enhanced losses to the atmosphere at L*u3c 4, where the phase space density (PSD) of multi-MeV electrons dropped by over an order of magnitude in1 MeV electrons and energetic protons, SAMPEX u3e1 MeV electrons, and ground observations of band-limited Pc1-2 wave activity, we show that this sudden loss was consistent with pitch angle scattering by electromagnetic ion cyclotron waves in the dusk magnetic local time sector at 3u3c L*u3c 4. At 4u3c L*u3c 5, local acceleration was also active during the main and early recovery phases, when growing peaks in electron PSD were observed by both Van Allen Probes and THEMIS. This acceleration corresponded to the period when IMF Bz was southward, the AE index was u3e300 nT, and energetic electron injections and whistler-mode chorus waves were observed throughout the inner magnetosphere for u3e12 h. After this period, Bz turned northward, and injections, chorus activity, and enhancements in PSD ceased. Overall, the outer belt was depleted by this storm. From the unprecedented level of observations available, we show direct evidence of the competitive nature of different wave-particle interactions controlling relativistic electron fluxes in the outer radiation belt.
机译:摘要地球外辐射带电子的大幅变化最终导致各种竞争源,损耗和运输过程,波粒相互作用均危重重要。在包括NASA的范艾伦探针,主题和SAMPEX任务和NOAA的GO和Poes Constellations中,使用包括15个航天器,我们调查了在2012年9月30日至10月3日强大的地磁风暴期间的外带的演变。这场风暴的主要阶段辍学呈现出增强的损失在L * U3C 4的大气中,多MEV电子的相空间密度(PSD)超过1 MEV电子和能量质子,Sampex U3E1 MEV电子,以及带限制的地面观察PC1-2波浪活性,我们表明,这种突然损失与黄昏磁性局部时间扇区中的电磁离子回旋波在3 U3C L * U3C 4中的螺距角散射一致。在4 U3C L * U3C 5,在主要和早期恢复相期间,局部加速也活跃,当Van Allen探针和主题观察到电子PSD中的生长峰时。这种加速度对应于IMF BZ向南时,AE指数是 U3E300NT,并且在整个内部磁层中观察到的充满活力的电子喷射和吹口石模式波浪。在此期间,BZ向北转动,注射,合唱活动和PSD的增强功能停止。总的来说,外带通过这场风暴耗尽。从前所未有的观察水平,我们显示不同波粒子相互作用的直接证据,控制外辐射带中的相对论电子磁通量。

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