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Terrestrial gamma-ray flashes

机译:地面伽玛射线闪烁

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摘要

Lightning and thunderstorm systems in general have been recently recognized as powerful particle accelerators, capable of producing electrons, positrons, gamma-rays and neutrons with energies as high as several tens of MeV. In fact, these natural systems turn out to be the highest energy and most efficient natural particle accelerators on Earth. Terrestrial Gamma-ray Flashes (TGFs) are millisecond long, very intense bursts of gamma-rays and are one of the most intriguing manifestation of these natural accelerators. Only three currently operative missions are capable of detecting TGFs from space: the RHESSI, Fermi and AGILE satellites. In this paper we review the characteristics of TGFs, including energy spectrum, timing structure, beam geometry and correlation with lightning, and the basic principles of the associated production models. Then we focus on the recent AGILE discoveries concerning the high energy extension of the TGF spectrum up to 100 MeV, which is difficult to reconcile with current theoretical models.
机译:总体而言,雷电和雷暴系统最近被公认为是功能强大的粒子加速器,能够产生能量高达数十MeV的电子,正电子,伽马射线和中子。实际上,这些自然系统被证明是地球上能量最高,效率最高的自然粒子加速器。地面伽马射线闪光(TGF)的长度为毫秒,是非常强烈的伽马射线爆发,是这些自然加速器中最引人入胜的表现之一。目前只有三个执行任务的特派团能够从太空探测TGF:RHESSI,Fermi和AGILE卫星。在本文中,我们回顾了TGF的特征,包括能谱,时序结构,光束几何形状以及与闪电的相关性,以及相关生产模型的基本原理。然后,我们关注于最近的AGILE发现,该发现涉及TGF谱的高能量扩展到100 MeV,这很难与当前的理论模型相吻合。

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