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Energetic auroral electron distributions derived from global X-ray measurements and comparison with in-situ particle measurements

机译:从整体X射线测量得出的高能极光电子分布,并与原位粒子测量进行比较

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摘要

On May, 27, 1996, the Polar Ionospheric Xray Imaging Experiment (PIXIE) on board NASA's POLAR spacecraft was imaging the southern auroral oval during an auroral substorm, Near simultaneous particle measurements by the DMSP F12 and F13 and POLAR satellites allow us to compare measured energetic electron distributions with distributions derived from the x-ray measurements; good agreement is achieved where the assumed electron distribution used in the x-ray derivations is a reasonable approximation to the measured distribution. The PIXIE data show an energy dispersion in the precipitating electrons in, the morning sector such that energy increases with increasing MLT: the result of the dependence of the electron drift speed on energy and its dominance over the loss rate due to precipitation. Strong pitch angle diffusion in the morning sector depletes the source of injected electrons creating the absence of significant electron fluxes, and thus x-ray fluxes, above 1.5 keV in the afternoon sector. [References: 9]
机译:1996年5月27日,美国宇航局POLAR航天器上的极地电离层X射线成像实验(PIXIE)正在对极光亚暴期间的南极光椭圆成像,DMSP F12和F13与POLAR卫星几乎同时进行了粒子测量,这使我们可以比较测得的具有从X射线测量得出的分布的高能电子分布;如果在X射线推导中使用的假定电子分布与所测得的分布合理接近,则可以达成良好的一致性。 PIXIE数据显示了早晨扇区中正在沉淀的电子中的能量分散,因​​此能量随MLT的增加而增加:这是电子漂移速度对能量的依赖性及其对降水造成的损耗率的支配性的结果。上午扇区的强俯仰角扩散会耗尽注入的电子源,从而导致下午扇区高于1.5 keV的情况下不存在明显的电子通量,因此也不会产生X射线通量。 [参考:9]

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