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Observations of the ionospheric impact of M‐class solar flares on local and hemispheric scales

机译:M级太阳耀斑在局部和半球形尺度上的电离层影响观测

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AbstractThe ionospheric impact of a series of M-class solar flares that occurred on 12 March 2015 is described. A combination of data sets from GPS receivers and two different colocated radio telescopes, the very large array (VLA) and the long wavelength array (LWA), was used to detect and characterize flare-induced irregularities. The data demonstrate that each flare causes a rapid step-like increase in total electron content (TEC) of about 0.2 total electron content units (TECU), 1 TECU = 1016 el m−2. The rise times of these steps are on the order of 1–3 min. The GPS data show signs of traveling ionospheric disturbances likely associated with gravity waves whose magnitudes were temporarily enhanced by the impact of two of the flares. Increased activity within the horizontal TEC gradients observed with the VLA was apparent for several minutes following the flare X-ray peak. The properties of these VLA-detected disturbances are strongly indicative of field-aligned irregularities within the plasmasphere. They initially form at two altitudes, approximately 2600 and 5600 km. Those that form higher quickly disappear, whereas those that form lower appear to descend over a period of ∼7 min to an altitude of roughly 1450 km before disappearing. LWA observations of ionospheric reflections of the HF radio station WWV show a significant and brief (∼few minutes) Doppler frequency disturbance near the onset of TEC enhancement, followed by a ∼5 min drop in received power, indicating increased ionization in the D region.
机译:摘要描述了2015年3月12日发生的一系列M级太阳耀斑对电离层的影响。 GPS接收器和两个不同的共置射电望远镜(非常大的阵列(VLA)和长波长的阵列(LWA))的数据集的组合用于检测和表征耀斑引起的不规则性。数据表明,每个耀斑都会导致总电子含量(TEC)迅速呈阶梯状增加,约为0.2总电子含量单位(TECU),即1 TECU = 1016 el m -2 。这些步骤的上升时间约为1-3分钟。 GPS数据显示出电离层扰动的迹象,这可能与重力波有关,重力波的强度由于两个耀斑的影响而暂时增强。在耀斑X射线峰之后的几分钟内,用VLA观察到的水平TEC梯度内的活性增加是明显的。这些VLA检测到的干扰的性质强烈指示了等离子层内场对准的不规则性。它们最初在两个高度形成,分别约为2600和5600 km。形成较高位置的那些消失了,而形成较低位置的那些消失了约7分钟,直到消失了大约1450 km的高度。 LWA对HF电台WWV电离层反射的观测表明,TEC增强开始附近出现了明显且短暂的(约数分钟)多普勒频率扰动,随后接收功率下降了约5分钟,表明D区电离增加。

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