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A survey of the anisotropy of the outer electron radiation belt during high-speed-stream-driven storms

机译:高速流驱动风暴中外电子辐射带的各向异性研究

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Electron measurements on board six spacecraft in geosynchronous orbit are superposed-epoch analyzed for 42 high-speed-stream-driven storms. Using pitch angle–resolved fluxes in the range 30 keV to 1.7 MeV, the evolution of the outer electron radiation belt and the suprathermal tail of the electron plasma sheet are studied. The outer electron radiation belt exhibits perpendicular-dominated anisotropies on the dayside and parallel-dominated anisotropies on the nightside consistent with shell splitting in a distorted magnetosphere. The magnitudes of the radiation-belt anisotropies are weak prior to storm onset and become very large during the storms. The magnitudes of the anisotropies lessen with time as the storm ages and the radiation belt heats, probably owing to a weakening of the magnetic field distortion as the storm ages. When a calm before the storm occurs, the dayside radiation belt approaches isotropy, probably owing to pitch angle scattering in the outer plasmasphere that fills during the calm. If no calm before the storm occurs, the dayside radiation belt is strongly perpendicular dominated. The local-time pattern of anisotropy in storms is very different for the suprathermal tail of the electron plasma sheet, which tends to be perpendicular on the nightside and isotropic elsewhere. The magnitudes of the anisotropies of the suprathermal tail are a factor of –10 weaker than the anisotropies of the outer electron radiation belt.
机译:对地球同步轨道上六个航天器上的电子测量值进行了叠加分析,以分析42个高速流驱动的风暴。使用在30 keV至1.7 MeV范围内的螺距角分辨通量,研究了电子等离子体片的外部电子辐射带和超热尾部的演化。外电子辐射带在白天表现出垂直支配的各向异性,在夜晚表现出平行支配的各向异性,这与扭曲的磁层中的壳分裂一致。辐射带各向异性的大小在暴风雨开始之前是弱的,在暴风雨期间变得非常大。随着风暴年龄的增加和辐射带的加热,各向异性的大小会随着时间的推移而减小,这可能是由于磁场强度随着风暴年龄的减弱而减弱的缘故。当暴风雨发生前的平静时,日辐射带接近各向同性,这可能是由于在平静期间充满的外部等离子层中的俯仰角散射所致。如果在暴风雨来临前没有平静,则日间辐射带将以强垂直为主。对于电子等离子体片的超热尾部,风暴中的各向异性的本地时间模式非常不同,该电子尾部板的超热尾部在夜间往往是垂直的,而在其他地方则是各向同性的。与外部电子辐射带的各向异性相比,超热尾部的各向异性的大小要弱–10倍。

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