首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Particle-in-Cell Simulations of Characteristics of Rising-Tone Chorus Waves in the Inner Magnetosphere
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Particle-in-Cell Simulations of Characteristics of Rising-Tone Chorus Waves in the Inner Magnetosphere

机译:Particle-in-Cell模拟的特点阳平合唱的磁气圈

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Whistler mode chorus waves in the Earth's inner magnetosphere are usually composed of discrete elements, and each element can be characterized by the following properties: the amplitude, the duration, the frequency span, and the frequency chirping rate. Using a one-dimensional (1-D) particle-in-cell (PIC) simulation code, we study the dependence of these properties of a rising-tone chorus on the number density n_(heq)/n_(c0) and temperature anisotropy AT of energetic electrons at the magnetic equator. The whistler waves are first excited around the magnetic equator by anisotropic energetic electrons and then develop into a rising-tone chorus when they leave away from the equator. During the propagation toward the pole, the rising-tone chorus with nearly constant frequency span first enhances and then decays. Its frequency chirping rate declines in the early stage and then gradually increases. Meanwhile, the chorus duration is quite the opposite due to propagation effect. Over a suitable range of n_(heq)/n_(c0) to generate rising-tone chorus, the frequency chirping rate of the excited rising-tone chorus first increases and then saturates, while its saturated amplitude, duration, and frequency span have a rising tendency with the increasing n_(heq)/n_(c0). As for A_T, the frequency chirping rate of the generated rising-tone chorus is increasing with the increase of A_T that is consistent with prediction of nonlinear theory, while the duration is just the opposite. Our simulation study can give a further understanding of the generation and propagation of rising-tone chorus waves.
机译:惠斯勒模式合唱波在地球的内部磁气圈通常是由离散元素,每个元素可以为特征通过以下属性:振幅,持续时间、频率跨度和频率啁啾率。particle-in-cell (PIC)模拟代码,我们研究这些属性的依赖阳平合唱数密度n_ (heq) / n_ (c0)和温度各向异性的高能电子在磁赤道。在惠斯勒波首先兴奋各向异性磁赤道的精力充沛电子,然后发展成一个上声离开时合唱远离赤道。在传播到极点,阳平合唱几乎恒定的频率首先增强,然后衰变。在早期的频率啁啾率下降阶段,然后逐渐增加。恰恰相反,由于合唱持续时间传播效果。n_ (heq) / n_ (c0)生成阳平合唱,频率啁啾的兴奋阳平合唱团首次增加使饱和,而其饱和振幅,时间和频率跨度有上升趋势随着n_ (heq) / n_ (c0)。A_T的频率啁啾率生成阳平合唱正在增加增加A_T是一致的非线性理论的预测,而时间恰恰相反。研究可以给一个进一步的了解生成和传播阳平合唱波。

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