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Perspective ground-based method for diagnostics of the lower ionosphere and the neutral atmosphere

机译:基于透视的地面电离层和中性大气诊断方法

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We present a new perspective ground-based method for diagnostics of the ionosphere and atmosphere parameters. The method uses one of the numerous physical phenomena observed in the ionosphere illuminated by highpower radio waves. It is a generation of the artificial periodic irregularities (APIs) in the ionospheric plasma. The APIs were found while studying the effects of ionospheric high-power HF modification. It was established that the APIs are formed by a standing wave that occurs due to interference between the upwardly radiated radio wave and its reflection off the ionosphere. The API studies are based upon observation of the Bragg backscatter of the pulsed probe radio wave from the artificial periodic structure. Bragg backscatter occurs if the spatial period of the irregularities is equal to half a wavelength of the probe signal. The API techniques makes it possible to obtain the following information: the profiles of electron density from the lower D-region up to the maximum of the F-layer; the irregular structure of the ionosphere including split of the regular E-layer, the sporadic layers; the vertical velocities in the D- and E-regions of the ionosphere; the turbulent velocities, turbulent diffusion coefficients and the turbopause altitude; the neutral temperatures and densities at the E-region altitudes; the parameters of the internal gravity waves and their spectral characteristics; the relative concentration of negative oxygen ions in the D-region. Some new results obtained by the API technique are discussed.
机译:我们提出了一种新的基于地面的电离层和大气参数诊断方法。该方法使用了在高功率无线电波照射下的电离层中观察到的众多物理现象之一。这是电离层等离子体中的人工周期性不规则(API)的产生。研究API是在研究电离层大功率HF改性的影响时发现的。已经确定,API是由驻波形成的,该驻波是由于向上辐射的无线电波与其从电离层的反射之间的干扰而产生的。 API研究基于对来自人工周期结构的脉冲探针无线电波的布拉格反向散射的观察。如果不规则的空间周期等于探测信号波长的一半,则会发生布拉格反向散射。 API技术使获得以下信息成为可能:从下部D区到F层最大值的电子密度分布;电离层的不规则结构,包括规则E层,零星层的分裂;电离层D和E区域的垂直速度;湍流速度,湍流扩散系数和涡轮暂停高度; E区海拔高度的中性温度和密度;内部重力波的参数及其频谱特性; D区域中负氧离子的相对浓度。讨论了通过API技术获得的一些新结果。

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