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Theories of Growth and Propagation of Parallel Whistler-Mode Chorus Emissions: A Review
Surveys in Geophysics ( IF 4.6 ) Pub Date : 2023-06-01 , DOI: 10.1007/s10712-023-09792-x
Miroslav Hanzelka , Ondřej Santolík

The significant role of nonlinear wave–particle interactions in the macrodynamics and microdynamics of the Earth’s outer radiation belt has long been recognised. Electron dropouts during magnetic storms, microbursts in atmospheric electron precipitation, and pulsating auroras are all associated with the rapid scattering of energetic electrons by the whistler-mode chorus, a structured electromagnetic emission known to reach amplitudes of about \(1\%\) of the ambient magnetic field. Despite the decades of experimental and theoretical investigations of chorus and the recent progress achieved through numerical simulations, there is no definitive theory of the chorus formation mechanism, not even in the simple case of parallel (one-dimensional) propagation. Here we follow the evolution of these theories from their beginnings in the 1960s to the current state, including newly emerging self-consistent excitation models. A critical review of the unique features of each approach is provided, taking into account the most recent spacecraft observations of the fine structure of chorus. Conflicting interpretations of the role of resonant electron current and magnetic field inhomogeneity are discussed. We also discuss the interplay between nonlinear growth and microscale propagation effects and identify future theoretical and observational challenges stemming from the two-dimensional aspects of chorus propagation.



中文翻译:

并行口哨模式合唱发射的增长和传播理论:综述

非线性波粒相互作用在地球外辐射带宏观动力学和微观动力学中的重要作用早已被人们认识到。磁暴期间的电子丢失、大气电子沉淀中的微爆发以及脉动极光都与哨声模式合唱团对高能电子的快速散射有关,哨声模式合唱团是一种结构电磁发射,已知振幅可达约\ (1\%\)环境磁场。尽管对合唱团进行了数十年的实验和理论研究,并且最近通过数值模拟取得了进展,但仍然没有关于合唱团形成机制的明确理论,即使是在并行(一维)传播的简单情况下也是如此。在这里,我们跟踪这些理论从 20 世纪 60 年代开始到现在的演变,包括新出现的自洽激励模型。考虑到最新的航天器对合唱团精细结构的观察,对每种方法的独特特征进行了严格的审查。讨论了谐振电子流和磁场不均匀性的作用的相互矛盾的解释。我们还讨论了非线性增长和微尺度传播效应之间的相互作用,并确定了合唱团传播的二维方面带来的未来理论和观测挑战。

更新日期:2023-06-01
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