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Experiments and theory on parametric instabilities excited in HF heating experiments at HAARP

机译:HAARP高频加热实验中激发的参数不稳定性的实验和理论

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Parametric instabilities excited by O-mode HF heater and the induced ionospheric modification were explored via HAARP digisonde operated in a fast mode. The impact of excited Langmuir waves and upper hybrid waves on the ionosphere are manifested by bumps in the virtual spread, which expand the ionogram echoes upward as much as 140 km and the downward range spread of the sounding echoes, which exceeds 50 km over a significant frequency range. The theory of parametric instabilities is presented. The theory identifies the ionogram bump located between the 3.2MHz heater frequency and the upper hybrid resonance frequency and the bump below the upper hybrid resonance frequency to be associated with the Langmuir and upper hybrid instabilities, respectively. The Langmuir bump is located close to the upper hybrid resonance frequency, rather than to the heater frequency, consistent with the theory. Each bump in the virtual height spread of the ionogram is similar to the cusp occurring in daytime ionograms at the E-F2 layer transition, indicating that there is a small ledge in the density profile similar to E-F2 layer transitions. The experimental results also show that the strong impact of the upper hybrid instability on the ionosphere can suppress the Langmuir instability.
机译:通过在快速模式下运行的HAARP digisonde探索了由O型高频加热器激发的参数不稳定性和诱导的电离层变化。激发的Langmuir波和上层混合波对电离层的影响表现为虚拟扩展中的颠簸,这些扩展使电离图回波向上扩展多达140 km,而回声的向下范围扩展则超过了50 km,频率范围。提出了参数不稳定性理论。该理论确定了位于3.2MHz加热器频率和上部混合共振频率之间的离子图凸点以及位于上部混合共振频率以下的凸点,分别与Langmuir和上部混合不稳定性相关。朗格缪尔凸点的位置靠近上混合谐振频率,而不是加热器频率,这与理论一致。离子图的虚拟高度扩展中的每个凸点都类似于E-F2层过渡处白天离子图中出现的尖点,表明密度分布中有一个小的壁架,类似于E-F2层过渡。实验结果还表明,上部混合动力不稳定性对电离层的强烈影响可以抑制朗缪尔不稳定性。

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