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Simulation and analysis of chemical release in the ionosphere
Authors:Jing-Fan Gao  Li-Xin Guo  Zheng-Wen Xu  Hai-Sheng Zhao  Jie Feng
Institution:1. School of Physics and Optoelectronic Engineering, Xidian University, Xi’an 710071, China;2. National Key Laboratory of Electromagnetic Environment, China Research Institute of Radiowave Propagation, Qingdao 266107, China
Abstract:Ionospheric inhomogeneous plasma produced by single point chemical release has simple space-time structure, and cannot impact radio wave frequencies higher than Very High Frequency (VHF) band. In order to produce more complicated ionospheric plasma perturbation structure and trigger instabilities phenomena, multiple-point chemical release scheme is presented in this paper. The effects of chemical release on low latitude ionospheric plasma are estimated by linear instability growth rate theory that high growth rate represents high irregularities, ionospheric scintillation occurrence probability and high scintillation intension in scintillation duration. The amplitude scintillations and the phase scintillations of 150?MHz, 400?MHz, and 1000?MHz are calculated based on the theory of multiple phase screen (MPS), when they propagate through the disturbed area.
Keywords:Ionosphere  Chemical release  Multiple-point release  Growth rate  MPS
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