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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Excitation of Plasma Irregularities in the F Region of the Ionosphere by Powerful HF RadioWaves of X-Polarization
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Excitation of Plasma Irregularities in the F Region of the Ionosphere by Powerful HF RadioWaves of X-Polarization

机译:强大的HF X偏振的强大HF无线电波,电离层F区域的血浆畸形激发

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摘要

We discuss theoretically the excitation of artificial plasma irregularities in the auroral ionosphere by high-frequency X-mode radio wave. This is done via a two-step process. As a first step we adopt the thermal self-focusing instability excited in the F region of the ionosphere under the action of a strong high-frequency (HF) radio wave. This instability causes the formation of perturbations of the electron temperature and plasma concentration across the magnetic field. In addition, the plasma becomes depleted in the regions of the electron temperature enhancements and vice versa, since the gradients of plasma concentration and the electron temperature have opposite signs. In such conditions the temperature gradient instability comes into play. As a second step we consider plasma and electron temperature inhomogeneities that appear due to this instability to be responsible for the generation of irregularities with transverse sizes smaller than the typical scales of the self-focusing instability. Alternative mechanisms such as excitation of the gradient-drift and the current-convective instabilities, which are often attributed to the generation of plasma irregularities in the F region and can contribute to the formation of artificial irregularities in the case of X-mode heating, are also discussed.
机译:理论上,通过高频X模式无线电波理论上讨论了天体电离层中的人工血浆不规则性的激发。这是通过两步过程完成的。作为第一步,我们在强大的高频(HF)无线电波的作用下采用在电离层的F区域中激发的热自聚焦不稳定。该稳定性导致在磁场上形成电子温度和等离子体浓度的扰动。此外,在电子温度增强的区域中偏离等离子体,反之亦然,因为等离子体浓度和电子温度具有相反的迹象。在这种情况下,温度梯度不稳定性发挥作用。作为第二步,我们考虑由于这种不稳定性而出现的等离子体和电子温度不均匀性,这些不稳定性地负责产生的横向尺寸小于自对焦不稳定性的典型尺度的横向尺寸。诸如激发梯度漂移的替代机制和电流 - 对流稳定性,这些机制通常归因于F区域中的等离子体不规则的产生并且可以在X模式加热的情况下贡献人工不规则性,是还讨论过。

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