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Features of Whistling Electromagnetic Wave Propagation Descending from above upon the Night Ionosphere

机译:夜间电离层自上而下呼啸的电磁波传播特征

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摘要

The results of numerical solution of the wave equations for the oblique incidence of whistling electromagnetic waves upon the night ionosphere from above have been obtained and analyzed. In the studied region of altitudes, within the wavelength scale, charged particle concentration varies drastically, and damping caused by collisions between the charged and neutral particles decreases considerably. Below, the sharp lower boundary of the ionosphere, the refractive index of the whistler wave approaches unity, and plasma turbulence transform into atmospheric electromagnetic waves. The dependences of the whistler reflection factor are found in terms of energy and horizontal magnetic component of the electromagnetic wave near the Earth's surface on the frequency and the wave vector transverse component for the plain-layered medium model at two values of latitude. Strong dependences have been found on the wave angle of incidence and frequency. At rather small angles of incidence, the wave disturbances reach the Earth's surface, and the module of reflection coefficient logarithm is in the range of 0.4-1. At large angles of incidence, the reflection coefficient module varies over a wide range depending on specific conditions. The obtained results explain the absence of oscillation modes of plasma magnetosphere maser in the night magnetosphere.
机译:从上方获得并分析了啸叫电磁波从斜上方入射到电离层的波动方程的数值解的结果。在所研究的海拔区域内,在波长范围内,带电粒子的浓度急剧变化,并且由带电粒子和中性粒子之间的碰撞引起的阻尼大大降低。在下面,电离层的尖锐下边界,惠斯勒波的折射率趋于一致,等离子湍流转化为大气电磁波。惠斯勒反射因子的依赖关系是根据地球表面附近电磁波的能量和水平磁分量在两个纬度值上对平层介质模型的频率和波矢量横向分量的依赖性而确定的。已经发现入射波和频率的波角有很强的依赖性。在相当小的入射角处,波干扰到达地球表面,并且反射系数对数的模数在0.4-1的范围内。在大入射角下,反射系数模块会根据特定条件在很宽的范围内变化。所获得的结果解释了在夜间磁层中没有等离子体磁层脉动的振荡模式。

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  • 来源
    《Cosmic research》 |2018年第1期|26-31|共6页
  • 作者

    Bespalov P. A.; Mizonova V. G.;

  • 作者单位

    Russian Acad Sci, Inst Appl Phys, Nizhnii Novgorod 603155, Russia;

    Alekseev State Tech Univ, Nizhnii Novgorod 603155, Russia;

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