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Turbulence and Microprocesses in Inhomogeneous Solar Wind Plasmas

机译:非均匀太阳风等离子体中的湍流和微过程

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摘要

The random density fluctuations observed in the solar wind plasma crucially influence on the Langmuir wave turbulence generated by energetic electron beams ejected during solar bursts. Those are powerful phenomena consisting of a chain of successive processes leading ultimately to strong electromagnetic emissions. The small-scale processes governing the interactions between the waves, the beams and the inhomogeneous plasmas need to be studied to explain such macroscopic phenomena. Moreover, the complexity induced by the plasma irregularities requires to find new approaches and modelling. Therefore theoretical and numerical tools were built to describe the Langmuir wave turbulence and the beam’s dynamics in inhomogeneous plasmas, in the form of a self-consistent Hamiltonian model including a fluid description for the plasma and a kinetic approach for the beam. On this basis, numerical simulations were performed in order to shed light on the impact of the density fluctuations on the beam dynamics, the electromagnetic wave radiation, the generation of Langmuir wave turbulence, the waves’ coupling and decay phenomena involving Langmuir and low frequency waves, the acceleration of beam electrons, their diffusion mechanisms, the modulation of the Langmuir waveforms and the statistical properties of the radiated fields’ distributions. The paper presents the main results obtained in the form of a review.
机译:在太阳风等离子体中观察到的随机密度波动对由太阳爆发期间发射的高能电子束产生的朗缪尔波湍流至关重要。这些是强大的现象,由一系列连续的过程组成,这些过程最终导致强烈的电磁辐射。需要研究控制波,光束和不均匀等离子体之间相互作用的小规模过程,以解释这种宏观现象。而且,由等离子体不规则引起的复杂性需要寻找新的方法和建模。因此,以自洽哈密顿模型的形式(包括对等离子体的流体描述和对射束的动力学方法),以理论和数值工具构建了描述不均匀等离子体中的朗缪尔波湍流和射束动力学的方法。在此基础上,进行了数值模拟,以阐明密度波动对光束动力学,电磁波辐射,朗缪尔波湍流的产生,波的耦合和涉及朗缪尔和低频波的衰减现象的影响。 ,束电子的加速,它们的扩散机制,朗缪尔波形的调制以及辐射场分布的统计特性。本文以评论的形式介绍了获得的主要结果。

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