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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >EISCAT observations of pump-enhanced plasma temperature and optical emission excitation rate as a function of power flux
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EISCAT observations of pump-enhanced plasma temperature and optical emission excitation rate as a function of power flux

机译:EISCAT观测pump-enhanced等离子体温度和光学发射激发率作为权力的通量函数

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摘要

We analyze optical emissions and enhanced electron temperatures induced by high power HF radio waves as a function of power flux using the EISCAT heater with a range of effective radiated powers. The UHF radar was used to measure the electron temperatures and densities. The Digital All Sky Imager was used to record the 630.0 nm optical emission intensities. We quantify the HF flux loss due to self-absorption in the D-region (typically 3-11 dB) and refraction in the F-region to determine the flux which reaches the upper-hybrid resonance height. We find a quasi-linear relationship between the HF flux and both the temperature enhancement and the optical emission excitation rate with a threshold at ~37.5 μWm ~(-2). On average ~70% of the HF flux at the upper-hybrid resonance height goes in to heating the electrons for fluxes above the threshold compared to ~40% for fluxes below the threshold.
机译:我们分析光学排放和增强电子温度引起的大功率高频无线电波作为权力的函数使用EISCAT通量加热器具有一系列有效的辐射力量。特高频雷达是用来测量电子温度和密度。630.0纳米光学成像仪用于记录排放强度。在d层损失聚精会神(通常是3-11 dB)和折射F-region确定到达的通量upper-hybrid共振高度。高频通量和准线性关系温度的提高和光学发射激发率与一个阈值~ 37.5μWm ~(2)。在upper-hybrid共振的高度来加热电子通量高于阈值而通量~ 40%以下阈值。

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