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Broadband very low frequency measurement of D region ionospheric perturbations caused by lightning electromagnetic pulses

机译:宽带频率测量非常低的D地区电离层扰动所致雷电电磁脉冲

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Prompt early/fast perturbations on narrowband sub-ionospherically propagating very low frequency (VLF) signals are the primary evidence for the direct coupling of energy released by lightning discharge to the lower ionosphere. Different mechanisms have been advanced to explain the fast ionospheric perturbations, such as heating and ionization from the lightning electromagnetic pulse (EMP) associated with elves or from quasielectrostatic fields associated with sprites and halos. By comparing the broadband VLF spectra (3–25 kHz) of lightning discharges that shortly followed high peak current lightning discharges with the spectra of lightning discharges that did not, we detect D region perturbations caused by these intense lightning strokes over the U.S. East Coast and the U.S. High Plains. The electron density changes are measured by analyzing the broadband VLF propagation changes, and the perturbed electron density profiles from both regions are found to be consistent with those theoretically predicted for strong lightning EMP. In one case, a D region perturbation was detected following a lightning stroke that produced an isolated elve recorded by the Imager of Sprites and Upper Atmospheric Lightning (ISUAL) instrument on the FORMOSAT-2 satellite, confirming the EMP origins of these ionospheric perturbations. For this case, we measure electron density enhancements of 460 cm?3 averaged over a 220-km radius and 10-km-high perturbation region, in good agreement with the 210 cm?3 measured optically by Mende et al. (2005) for a different elve event. The characteristics of the lightning responsible for these ionospheric perturbations are investigated by comparing high peak current lighting strokes that do and do not generate detectable ionospheric perturbations.
机译:提示早期/快速窄带干扰sub-ionospherically传播非常低频率(甚低频)信号的主要证据直接耦合的能量释放闪电放电的低电离层。不同的机制一直是先进的解释快速电离层扰动,等加热和电离的闪电电磁脉冲(EMP)与精灵或从quasielectrostatic领域联系在一起精灵和光环。闪电放电的光谱(3-25千赫)不久之后高峰值电流闪电闪电放电的光谱不排放,我们检测D区域扰动造成的这些强烈的闪电在美国东海岸和美国中风高的平原。通过分析宽带甚低频来衡量传播的变化,扰乱电子密度资料来自这两个地区被发现与理论预测是一致的强大的雷电电磁脉冲,在一个案例中,一个D扰动检测后闪电中风产生一个孤立的精灵了精灵和上层大气的成像仪闪电(视觉)FORMOSAT-2仪器卫星,确认的EMP的起源电离层扰动。测量电子密度增强460厘米吗?平均在220公里半径和10-km-high扰动区域,在良好的协议210厘米吗?为不同的精灵事件(2005)。闪电负责的特性这些研究了电离层扰动通过比较高的峰值电流照明中风做,不产生可检测的电离层扰动。

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