Montanyà Joan, van der Velde Oscar, Williams Earle R
Universitat Politècnica de Catalunya, Electrical Engineering Department, Barcelona, 08034, Spain.
Massachusetts Institute of Technology, Parsons Laboratory, Cambridge, 02139, USA.
Sci Rep. 2015 Oct 16;5:15180. doi: 10.1038/srep15180.
Lightning flashes are known to initiate in regions of strong electric fields inside thunderstorms, between layers of positively and negatively charged precipitation particles. For that reason, lightning inception is typically hidden from sight of camera systems used in research. Other technology such as lightning mapping systems based on radio waves can typically detect only some aspects of the lightning initiation process and subsequent development of positive and negative leaders. We report here a serendipitous recording of bidirectional lightning initiation in virgin air under the cloud base at ~11,000 images per second, and the differences in characteristics of opposite polarity leader sections during the earliest stages of the discharge. This case reveals natural lightning initiation, propagation and a return stroke as in negative cloud-to-ground flashes, upon connection to another lightning channel - without any masking by cloud.
众所周知,闪电闪发起始于雷暴内部强电场区域,位于带正电和带负电的降水粒子层之间。因此,闪电起始通常无法被研究中使用的摄像系统观测到。其他技术,如基于无线电波的闪电测绘系统,通常只能检测到闪电起始过程以及随后正、负先导发展的某些方面。我们在此报告了一次意外记录,以每秒约11000帧的速度记录了云底下方未受扰动空气中的双向闪电起始,以及放电最早阶段相反极性先导段特征的差异。该案例揭示了自然闪电的起始、传播以及与另一个闪电通道连接时的回击,就像负云地闪电一样——没有任何云层的遮挡。