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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Simulations of the Generation of Energetic Electrons and the Formation of Descending Artificial Plasma Layers During HF Heating at Arecibo
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Simulations of the Generation of Energetic Electrons and the Formation of Descending Artificial Plasma Layers During HF Heating at Arecibo

机译:模拟生成的精力充沛电子和下行的形成人工等离子层在高频加热电离层

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摘要

High-frequency (HF)-induced descending artificial plasma layers (DAPLs) are artificially ionized plasma layers with plasma density in excess of that of the F_2 peak. They were discovered during HF heating experiments at the High-Frequency Active Auroral Research Program where they descended up to 70 km from the initial O mode wave reflection height. The DAPLs were attributed to the ionization of the neutral gas by high-energy electrons accelerated by the artificial ionospheric turbulence. Recently, DAPL formation was reported during the HF heating experiment at Arecibo (Bernhardt et al., 2017, https://ies2017. bc.edu/). This result was unexpected since Arecibo has the effective radiated power 4–5 times lower than that at High-Frequency Active Auroral Research Program, and since the experiment at Arecibo also has an unfavorable geometry, where the HF beam is directed vertically while the inclination of the geomagnetic field is 43.5°, allowing the fast electrons to escape the volume where their interaction with the artificial plasma turbulence occurs. However, the presence of photoelectrons due to the ultraviolet radiation from the Sun at the low latitude of Arecibo could magnify the flux of hot electrons. A model of artificial plasma layers created by the Arecibo HF facility is presented. It shows that Langmuir turbulence due to the HF heating can accelerate part of the ambient photoelectrons to energies above the ionization threshold of the neutral gas, leading to the formation of DAPLs. The present model results are in quantitative agreement with the experiments of Bernhardt et al. (2017).
机译:全身的高频(HF)下行人工等离子层(DAPLs)人为电离与等离子体密度超过等离子层₂峰值。在高频高频加热实验活动极光研究计划他们的地方下70公里从最初的模式波反射高度。中性的电离气体高能电子的加速人工电离层扰动。在高频加热形成报告实验在阿雷西博(伯恩哈特et al ., 2017年,https://ies2017。意想不到的阿雷西博以来有效辐射功率低于4 - 5倍高频活跃极光研究计划,因为在阿雷西博还有一个实验不利的几何、高频梁的位置垂直定向的倾向地磁场是43.5°,允许快速电子逃离他们的体积与人工等离子体湍流的交互发生。由于来自太阳的紫外线辐射阿雷西博的低纬度可能放大热通量电子。等离子层由阿雷西博高频设备提出了。由于高频加热可以加速的一部分环境光电子能量之上中性的气体的电离阈值,DAPLs的形成。结果定量协议伯恩哈特et al .(2017)的实验。

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