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Excitation of whistler waves below the lower hybrid frequency by a loop antenna located in an enhanced density duct

机译:通过位于增强密度管道的环形天线在较低的混合频率下方激发吹口机波

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摘要

Whistler wave radiation from a loop antenna located in a cylindrical duct with enhanced plasma density is considered in the case where the wave frequency is less than the lower hybrid frequency. Using the full-wave formulation, the total radiation resistance and the partial radiation resistances corresponding to guided eigenmodes of such a duct and unguided waves radiating to the background magnetoplasma are calculated and analyzed as functions of the plasma and source parameters. The emphasis is placed on the radiation characteristics of the considered source in the presence of an artificial near-antenna duct that can be created during active experiments in the ionosphere. Conditions are revealed under which the total radiation resistance is predominantly determined by the excitation of the eigenmodes of the duct. It is shown that the presence of an enhanced density duct can lead to a notable increase in the radiation resistance of a loop antenna in the discussed frequency range even if the duct is rather narrow and capable of guiding only a single low- order eigenmode. The results obtained can be helpful in understanding the basic features of excitation of the ducted whistlers and planning the related ionospheric and laboratory experiments. Published by AIP Publishing.
机译:在波频小于较低的混合频率的情况下,考虑来自位于圆柱形管道中的圆柱形管道中的循环天线的吹奏器波辐射。使用全波制剂,总辐射电阻和对应于这样的导管和无制导波放射到背景磁等离子体的引导的本征模的局部辐射电阻被计算和分析作为等离子体源和参数的函数。在可以在电离层中的活性实验期间可以在可以产生的人工近天线管的存在下,重点放置在所考虑的源的辐射特征上。揭示了条件,在该条件下,总辐射抗性主要通过管道的特征模谱的激发来决定。结果表明,即使管道相当窄,也可以导致讨论的频率范围内的环形天线的辐射电阻的显着增加,即使管道相当窄,并且能够仅引导单个低位的小阶模特,也可以导致讨论的频率范围内的显着增加。所获得的结果可以有助于了解导管哨声激励的基本特征,并规划相关电离层和实验室实验。通过AIP发布发布。

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