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Do cosmic ray air showers initiate lightning?: A statistical analysis of cosmic ray air showers and lightning mapping array data

机译:宇宙射线风淋会引发闪电吗?:对宇宙射线风淋和闪电映射数组数据的统计分析

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摘要

It has been argued in the technical literature, and widely reported in the popular press, that cosmic ray air showers (CRASs) can initiate lightning via a mechanism known as relativistic runaway electron avalanche (RREA), where large numbers of high-energy and low-energy electrons can, somehow, cause the local atmosphere in a thundercloud to transition to a conducting state. In response to this claim, other researchers have published simulations showing that the electron density produced by RREA is far too small to be able to affect the conductivity in the cloud sufficiently to initiate lightning. In this paper, we compare 74days of cosmic ray air shower data collected in north central Florida during 2013-2015, the recorded CRASs having primary energies on the order of 10(16)eV to 10(18)eV and zenith angles less than 38 degrees, with Lightning Mapping Array (LMA) data, and we show that there is no evidence that the detected cosmic ray air showers initiated lightning. Furthermore, we show that the average probability of any of our detected cosmic ray air showers to initiate a lightning flash can be no more than 5%. If all lightning flashes were initiated by cosmic ray air showers, then about 1.6% of detected CRASs would initiate lightning; therefore, we do not have enough data to exclude the possibility that lightning flashes could be initiated by cosmic ray air showers.
机译:在技​​术文献中已有论据,在大众媒体上也有广泛报道,宇宙射线风淋(CRAS)可以通过一种称为相对论失控电子雪崩(RREA)的机制来引发闪电,该机制中大量的高能量和低能量能量电子可以某种方式导致雷云中的局部大气转变为导电状态。为了响应这一要求,其他研究人员发表了模拟结果,显示RREA产生的电子密度太小,不足以影响云中的电导率以引发闪电。在本文中,我们比较了2013年至2015年在佛罗里达州中北部收集的74天的宇宙射线空气淋浴数据,记录的CRAS的一次能量在10(16)eV到10(18)eV量级,天顶角小于38度,以及闪电映射阵列(LMA)数据,我们表明没有证据表明探测到的宇宙射线空气骤雨会引发闪电。此外,我们表明,我们检测到的任何宇宙射线风淋引发闪电的平均概率不超过5%。如果所有的闪电都是由宇宙射线风淋引发的,那么大约1.6%的CRAS会引发闪电。因此,我们没有足够的数据来排除宇宙射线风淋可能引发闪电的可能性。

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