首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Parametric Decay of Beam-Generated Langmuir Waves and Three-Wave Interaction in Plateau Plasmas:Implications for Type III Radiation
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Parametric Decay of Beam-Generated Langmuir Waves and Three-Wave Interaction in Plateau Plasmas:Implications for Type III Radiation

机译:的参数衰变Beam-Generated朗缪尔波并在高原三波相互作用等离子体:III型辐射的影响

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摘要

Inspired by the results of particle-in-cell simulations on beam-plasma interaction, we present a mechanism for the generation of radio waves in solar type III bursts which provides a closed chain of the conversion processes from beam-generated Langmuir waves into electromagnetic emission. The mechanism is characterized by two key steps. The first is a hitherto unknown parametric decay process in which the primary wave directly decays to low-k Langmuir waves (plasma oscillations) and ion acoustic waves. This decay becomes possible due to changes in the dispersion properties of longitudinal waves initiated by the presence of a beam or a plateau in the electron velocity distribution. A resonant three-wave interaction is established between the beam-induced Langmuir wave, the plasma oscillations, and the ion acoustic wave. Due to weak damping of the waves involved, this interaction persists after the beam has relaxed to a plateau and lasts as long as the latter exists. In the second step, low-k Langmuir waves in the range of “optical wavelengths” can linearly couple to obliquely propagating radio waves at the plasma frequency in a wave number region around the cross points where quasi-longitudinal and quasi-transverse modes approach each other. Our model does not need the persistence of the beam and the associated instability for radiation to be produced. Although the theory is local with respect to the plasma frequency, it may open a way to overcome Sturrock's (1964) dilemma of rapid beam relaxation on the one side and long-lived radiation on the other. The observed frequency variation is suggested to arise by “adiabatic” motion of the beam-created interaction region through the heliospheric plasma of decreasing electron density. Implications for the interpretation of in situ Langmuir waveforms and the diversity of their frequency spectra are discussed.
机译:灵感来自particle-in-cell的结果束等离子交互模拟,我们现在广播的产生机制在太阳III型破裂提供闭链的转换过程beam-generated朗缪尔波进电磁发射。特点是两个关键步骤。迄今未知参数衰变过程主波直接衰减性能朗缪尔波(等离子体振荡)和离子声波。的色散性质的改变纵向波发起的存在梁或电子速度的高原分布。beam-induced之间建立了朗缪尔波等离子体振荡,离子声波。参与,这种交互后仍然存在梁已经放松了高原和持续那么长因为后者的存在。朗缪尔波”的光波长”可以线性一对斜在等离子体频率无线电波传播在波数在十字架周围地区分quasi-longitudinal和quasi-transverse模式的方法。需要梁和的持久性对辐射不稳定有关生产。对等离子体频率时,它会打开一个方法克服Sturrock的(1964)的困境快速梁在一边,放松长寿的辐射。频率变化建议出现“绝热beam-created的运动互动区域通过日球等离子体的电子密度减少。对原位的解释朗缪尔波形和他们的多样性频率谱进行了讨论。

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