首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Luminosity and propagation characteristics of sprite streamers initiated from small ionospheric disturbances at subbreakdown conditions
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Luminosity and propagation characteristics of sprite streamers initiated from small ionospheric disturbances at subbreakdown conditions

机译:亚击穿条件下小电离层扰动引起的子画面流光的发光度和传播特性

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This paper reports a modeling study on sprite streamer formation at subbreakdown conditions, i.e., the initiation of sprite streamers in a lightning field below the breakdown threshold field E _k. Successful formation of streamers is observed for a variety of electric fields with the lowest field of 0.3E _k when an appropriate ionization column is introduced. The simulation results also indicate that the initial ionization patch from which a streamer is initiated may become very bright following the streamer formation, and its brightness persists as the streamer continues its propagation. The overall luminous structure of the streamer and the ionization patch is very similar to the appearance of initiation of a single sprite streamer on high-speed images. The brightness of the patch depends on its initial density, and the patch with smaller density is brighter than the denser one. An analytical formula describing the temporal and spatial variation of the electric field in the streamer channel is derived to explain the brightening of the ionization column as well as the luminous streamer trail. Finally, comparisons between the streamers from the ionization patch and those forming in the vicinity of a conducting sphere in an electric field below E _κ show that the exponential growth rates associated with streamer characteristics are similar.
机译:本文报道了在子击穿条件下形成子弹头的模型研究,即在击穿阈值场E _k以下的雷电场中子弹头的启动。当引入合适的电离柱时,在各种电场中观察到成功形成了流光,最低电场为0.3E_k。仿真结果还表明,在启动拖缆后,启动拖缆的初始电离斑片可能会变得非常亮,并且当拖缆继续传播时,其亮度会持续存在。拖缆和电离贴片的整体发光结构与高速图像上单个精灵拖缆的启动外观非常相似。贴片的亮度取决于其初始密度,而密度较小的贴片则比密集的贴片亮。导出了描述拖缆通道中电场的时空变化的解析公式,以解释电离柱的亮度以及拖缆的发光轨迹。最后,将电离斑片的流光与在E_κ以下的电场中在导电球附近形成的流光进行比较,结果表明,与流光特性相关的指数增长率相似。

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