Response of ionospheric electron density profile to the action of powerful HF radio-wave radiation

Yuliya Legostaeva, A. Shindin, S. Grach
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Abstract

Using electron density and temperature equations, we have modeled the dynamics of the electron density profile in the ionosphere due to the expulsion of plasma from localization regions of plasma waves, pumped by high-power HF radio waves, i.e. wave reflection and upper hybrid resonance regions. Causes of the ionospheric plasma expulsion are an increase in the gas-kinetic pressure due to the ohm heating of electrons by plasma waves, and the high-frequency pressure of plasma waves (ponderomotive expulsion). We have established that the ponderomotive expulsion develops more rapidly and is responsible for the formation of local regions of plasma density depletion near plasma resonances, whereas the gas-kinetic pressure increase is responsible for the formation of lower-density region, which is slower in time and more extended and smoother in height. The results obtained qualitatively agree with the data from the experiment conducted at the HAARP facility in 2014.
电离层电子密度分布对强高频无线电波辐射的响应
利用电子密度和温度方程,我们模拟了电离层中电子密度分布的动力学,这是由于等离子体从高功率高频无线电波泵浦的等离子体波局部区域(即波反射和上部混合共振区域)中驱逐而引起的。电离层等离子体驱逐的原因是由于等离子体波对电子的欧姆加热引起的气体动力学压力的增加,以及等离子体波的高频压力(重动力驱逐)。我们已经确定,在等离子体共振附近,重动力排出发展更快,形成了等离子体密度耗尽的局部区域,而气体动力学压力的增加导致了低密度区域的形成,该区域在时间上更慢,在高度上更延伸和平滑。所得结果与2014年在HAARP设施进行的实验数据具有质的一致性。
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