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Wave-plasma interaction experiments at Arecibo using vertically and obliquely injected HF waves

机译:垂直和倾斜注入的HF波在Arecibo的波等离子体相互作用实验

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Summary form only given. In recent ionospheric heating experiments at Arecibo, Puerto Rico, the spectral characteristics of HF enhanced Langmuir waves, among other phenomena, were investigated. Obliquely propagating HF waves were transmitted from a tilted heater in experiments during August 5-11, 1992, while vertically propagating HF waves were employed in experiments during September 17-22, 1992. The cascading spectra of PDI (parametric decay instabilities) produced Langmuir waves were observed in the vertical heating experiments, as expected. Radar measurements of the HF enhanced plasma lines in the oblique heating experiments also showed the excitation of PDI. Theoretical analyses suggest that the VLF waves produced by lightning or injected from a ground-based transmitter near Arecibo can be guided by the HF-induced ionospheric ducts to reach the radiation belts at L = 1.47 and effectively interact with energetic electrons through pitch angle scattering.
机译:仅提供摘要表格。在波多黎各阿雷西博市最近的电离层加热实验中,研究了HF增强的朗缪尔波的频谱特征以及其他现象。在1992年8月5日至11日的实验中,倾斜加热器发出了倾斜传播的HF波,而在1992年9月17日至22日的实验中使用了垂直传播的HF波。PDI(参数衰减不稳定性)的级联谱产生了朗缪尔波。如所预期的那样,在垂直加热实验中观察到了α。在倾斜加热实验中,HF增强等离子体线的雷达测量结果也显示了PDI的激发。理论分析表明,由闪电产生或从阿雷西博附近的地面发射器注入的甚低频波可被HF感应的电离层导管引导,到达L = 1.47的辐射带,并通过俯仰角散射有效地与高能电子相互作用。

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