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球状闪电的相对论微波理论。

Relativistic-microwave theory of ball lightning.

作者信息

Wu H-C

机构信息

Institute for Fusion Theory and Simulation (IFTS) and Department of Physics, Zhejiang University, Hangzhou 310027, China.

IFSA Collaborative Innovation Center, Shanghai Jiao Tong University, Shanghai 200240, China.

出版信息

Sci Rep. 2016 Jun 22;6:28263. doi: 10.1038/srep28263.

Abstract

Ball lightning, a fireball sometimes observed during lightnings, has remained unexplained. Here we present a comprehensive theory for the phenomenon: At the tip of a lightning stroke reaching the ground, a relativistic electron bunch can be produced, which in turn excites intense microwave radiation. The latter ionizes the local air and the radiation pressure evacuates the resulting plasma, forming a spherical plasma bubble that stably traps the radiation. This mechanism is verified by particle simulations. The many known properties of ball lightning, such as the occurrence site, relation to the lightning channels, appearance in aircraft, its shape, size, sound, spark, spectrum, motion, as well as the resulting injuries and damages, are also explained. Our theory suggests that ball lighting can be created in the laboratory or triggered during thunderstorms. Our results should be useful for lightning protection and aviation safety, as well as stimulate research interest in the relativistic regime of microwave physics.

摘要

球状闪电,一种有时在闪电过程中观测到的火球,一直未得到解释。在此我们提出一种针对该现象的全面理论:在到达地面的闪电先导尖端,会产生一个相对论性电子束,进而激发强烈的微波辐射。后者使局部空气电离,辐射压力将产生的等离子体排空,形成一个球形等离子体泡,该泡稳定地捕获辐射。这一机制通过粒子模拟得到了验证。球状闪电的许多已知特性,如出现地点、与闪电通道的关系、在飞机上的出现情况、其形状、大小、声音、火花、光谱、运动,以及造成的伤害和破坏,也都得到了解释。我们的理论表明,球状闪电可以在实验室中产生,或者在雷暴期间触发。我们的结果对于雷电防护和航空安全应是有用的,同时也会激发对微波物理学相对论领域的研究兴趣。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4b9/4916449/528d79be471a/srep28263-f1.jpg

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