首页> 外文期刊>Geomagnetism and aeronomy >Disturbances of the ionospheric conductivity owing to the generation of magnetic pulsations in the Pc1 frequency range by means of the heating of electrons by a ground-based high-power high-frequency transmitter
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Disturbances of the ionospheric conductivity owing to the generation of magnetic pulsations in the Pc1 frequency range by means of the heating of electrons by a ground-based high-power high-frequency transmitter

机译:电离层电导率的扰动是由于地面高功率高频发射机通过电子加热在Pc1频率范围内产生磁脉冲而引起的

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摘要

Experiments on the generation of artificial electromagnetic pulsations constitute an important part of investigations of the magnetosphere-ionosphere system with the use of an active action. The investigation of the generation of magnetic pulsations in the Pc1 frequency range has shown that the response of the ionosphere to heating is detected only in a few experiments. Although the primary perturbed parameter is the electron temperature, the efficiency of the generation of pulsations is determined by the perturbations of the ionospheric conductivity. The magnitude of these hertz perturbations depends complexly on the electron density profile and the parameters of a pump wave. The numerical experiment demonstrates the determining effect of the electron density in the D region on the magnitude of perturbations of the ionospheric conductivity. Under conditions of a low electron density, it is impossible to create a large perturbation of the conductivity in the Pc1 frequency range, although perturbations of the electron temperature can be large in this case. In view of a large number of electrons at altitudes of 70-90 km, which absorb a considerable fraction of the energy of a high-frequency wave, the electron temperature in the E region of the ionosphere cannot be sharply increased, but the amplitude of the variations of the ionospheric conductivity in this case is larger than that for the profiles with a low electron density. In the presence of the developed D region, the efficiency of the modification of the conductivity in the indicated frequency range can be increased by choosing the optimal frequency and polarization of the pump wave. A low efficiency of the experiments on the generation of artificial magnetic pulsations in the Pc1 frequency range is apparently explained by the fact that they were performed in winter in the absence of a well-developed D region of the ionosphere.
机译:人工电磁脉冲产生实验是利用主动作用研究磁层-电离层系统的重要组成部分。对在Pc1频率范围内产生磁脉冲的研究表明,电离层对加热的响应仅在少数实验中才能检测到。尽管主要的扰动参数是电子温度,但产生脉冲的效率取决于电离层电导率的扰动。这些赫兹摄动的大小复杂地取决于电子密度分布和泵浦波的参数。数值实验证明了D区电子密度对电离层电导率扰动幅度的确定作用。在低电子密度的条件下,尽管在这种情况下电子温度的扰动可能很大,但不可能在Pc1频率范围内产生较大的电导率扰动。鉴于在70-90 km的高度上有大量电子吸收了相当一部分高频波的能量,因此电离层E区的电子温度无法急剧提高,但电离层的振幅却很大。在这种情况下,电离层电导率的变化要大于电子密度低的电离层电导率的变化。在存在发达的D区的情况下,可以通过选择最佳频率和泵浦波的极化来提高指示频率范围内电导率的修改效率。在Pc1频率范围内产生人工磁脉冲的实验效率低下,显然是由于它们是在冬季在电离层D区域不发达的情况下进行的。

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