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Prompt energization of relativistic and highly relativistic electrons during a substorm interval

机译:在代源间隔期间提示相对论和高度相对的电子的激励

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On 17 March 2013, a large magnetic storm significantly depleted the multi-MeV radiation belt. We present multi-instrument observations from the Van Allen Probes spacecraft Radiation Belt Storm Probe A and Radiation Belt Storm Probe B at ~6 Re in the midnight sector magnetosphere and from ground-based ionospheric sensors during a substorm dipolarization followed by rapid reenergization of multi-MeV electrons [1]. A 50% increase in magnetic field magnitude occurred simultaneously with dramatic increases in 100 keV electron fluxes and a 100 times increase in VLF wave intensity. Chorus is excited following the injection of low-energy (1–30 keV) plasma sheet electrons into the inner magnetosphere [2]. During the 17 March substorm injection, cold plasma that had circulated into the nightside magnetosphere from the dayside ionosphere-plasmasphere contributed to an energetic (50 keV) electron population involved in chorus-mode wave amplification [3]. The high-energy tail (>100 keV) of the injected electrons and the intense VLF waves provide a seed population and energy source for subsequent radiation belt energization. The observed electron flux behavior is striking in its large increases over short intervals. As seen by RBSP-A at L? ~ 4.5 highly relativistic (>2MeV) electron fluxes increased immediately at the time of the substorm injection and strong chorus enhancement. At RBSP-B, at apogee at substorm onset, observed in the ~5 h separation between L? = 4.0 crossings, 3.60 MeV highly relativistic electron fluxes increased by a factor of 56, while 4.50 MeV flux increased by an even larger factor of 95. The 17 March multipoint observations indicate the significant role that substorm processes can play in creating a seed population of 100 keV electrons and VLF chorus wave enhancements that can lead to a prompt energization of relativistic and highly relativistic electrons in the region outside the plasm- pause.
机译:于2013年3月17日,大型磁风暴显着耗尽了多MeV辐射带。我们在午夜扇形磁层中的Van Allen探针航天器辐射带风暴探测A和放射带风暴探针B的多仪器观测和辐射带风暴探针B在午夜扇形磁层和地面离子体传感器中,然后是多重的重新结合快速MEV电子[1]。 100keV电子通量的显着增加,磁场幅度的增加50%同时发生,VLF波强度增加100倍。在内部磁层注入低能量(1-30keV)等离子片外,合唱是兴奋的兴奋[2]。在3月17日的取代注射中,冷等离子体从天杜晶层 - Plaspmaphere循环到夜间磁层中,促成了合唱模式波扩增的精力充沛(50keV)电子群[3]。注入电子和强型VLF波的高能量尾(> 100keV)为随后的辐射带通电提供种子种群和能源。观察到的电子通量行为在短间隔内大幅增加。如rbsp-a在l? 〜4.5高度相对论(> 2mev)电子助熔剂在取代时立即增加,并强大的合唱增强。在rbsp-b,在attmee处于代侵子发作,在l之间观察到的〜5 h分离? = 4.0交叉口,3.60 meV高度相对论的电子助熔剂增加了56倍,而4.50 meV通量通过95倍的甚至更大的倍数增加。17月的多点观察表明取代过程可以在创造种子群体中发挥重大作用100 kev电子和VLF合唱波增强功能,可以导致在暂停外部的区域中的相对论和高度相对论的电子的快速通电。

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