研究目的
To demonstrate that the presence of photoelectrons can provide during daytime the ambient conditions for Strong Langmuir Turbulence (SLT) acceleration even in the absence of the Upper Hybrid (UH) pre-acceleration required by HAARP, and to present a model of artificial plasma layers created by the Arecibo HF facility.
研究成果
The model shows that the hot electrons caused by the acceleration of the ambient photoelectrons by the artificial plasma turbulence can ionize the neutral gas when their energy exceeds about 15 eV, leading to the formation of DAPLs. The present model results are in quantitative agreement with the Arecibo experiment, explaining why only one DAPL is formed below the initial turbulent layer at Arecibo, unlike multiple layers at HAARP.
研究不足
The model depends only weakly on the temperature of photoelectrons, and the HF electric field at Arecibo is insufficient to accelerate the bulk of electrons to energy > 15 eV required for the ionization, limiting the ionization process to photoelectrons.