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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Contrasting behavior of the thermosphere and ionosphere in response to the 28 October 2003 solar flare
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Contrasting behavior of the thermosphere and ionosphere in response to the 28 October 2003 solar flare

机译:热电离层和截然不同的行为2003年10月28日电离层作为回应太阳耀斑

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摘要

We examined the thermospheric and ionospheric responses to the solar flare on 28 October 2003, utilizing simultaneous observations of the electron and neutral density from the CHAMP satellite. Rapid thermospheric response within a few minutes was observed. In addition, the neutral and plasma perturbations contrasted each other remarkably. First, their temporal development differed. Though started nearly simultaneously, the plasma perturbation developed much faster and to a larger amplitude than its neutral counterpart. Second, their latitudinal distributions differed. At the initial stage of the response, the neutral density was enhanced by 20% almost homogeneously at all latitudes below 50°N/S. In comparison, the plasma disturbance exhibited a distinctive latitudinal structure, with largest density enhancements of 68% at the dip equator, moderate increase of ~20% at midlatitudes, and depression up to 35% around 15°N/S. This suggests a decoupling between the neutral and plasma disturbances during this stage. The plasma-neutral coupling via ion drag was found to become important about 2–3 hours after the flare bursts. Another interesting feature is that the equatorial ionization anomaly was significantly weakened during the flare. The observations demonstrated that electrodynamics related to the equatorial fountain dominated the photochemistry in controlling the flare-induced plasma density disturbances on 28 October 2003. This differs considerably from the nearly linear cos(SZA) dependence of flare-induced total electron content enhancements.
机译:我们检查了thermospheric和电离层2003年10月28日对太阳耀斑的反应利用同步观测电子和中性密度的冠军卫星。观察几分钟。中性和等离子扰动形成鲜明对比其他相当。发展不同。同时,等离子体扰动发展比它更快和更大的振幅中性。分布不同。响应,增强了中性密度下面的20%几乎所有纬度上的均匀50°N / S。表现出一种独特的纬度的结构,与最大密度增强68%磁赤道~ 20%的适度增长情理之中,和抑郁高达35%左右15°N / S。中性和等离子体干扰阶段。大约2 - 3小时被发现成为重要在耀斑爆发之后。功能是赤道电离异常在耀斑明显减弱。观察结果表明,电动力学与赤道占据了喷泉在控制flare-induced光化学等离子体密度扰动2003年10月28日。这大大不同于几乎线性的flare-induced cos (SZA)的依赖关系增强电子内容。

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