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Study of plasma-based stable and ultrawideband electromagnetic wave absorption for stealth application

Study of plasma-based stable and ultrawideband electromagnetic wave absorption for stealth application
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摘要 A plasma-based stable,ultra-wideband electromagnetic(EM) wave absorber structure is studied in this paper for stealth applications.The stability is maintained by a multi-layer structure with several plasma layers and dielectric layers distributed alternately.The plasma in each plasma layer is designed to be uniform,whereas it has a discrete nonuniform distribution from the overall view of the structure.The nonuniform distribution of the plasma is the key to obtaining ultra-wideband wave absorption.A discrete Epstein distribution model is put forward to constrain the nonuniform electron density of the plasma layers,by which the wave absorption range is extended to the ultra-wideband.Then,the scattering matrix method(SMM) is employed to analyze the electromagnetic reflection and absorption of the absorber structure.In the simulation,the validation of the proposed structure and model in ultra-wideband EM wave absorption is first illustrated by comparing the nonuniform plasma model with the uniform case.Then,the influence of various parameters on the EM wave reflection of the plasma are simulated and analyzed in detail,verifying the EM wave absorption performance of the absorber.The proposed structure and model are expected to be superior in some realistic applications,such as supersonic aircraft. A plasma-based stable,ultra-wideband electromagnetic(EM) wave absorber structure is studied in this paper for stealth applications.The stability is maintained by a multi-layer structure with several plasma layers and dielectric layers distributed alternately.The plasma in each plasma layer is designed to be uniform,whereas it has a discrete nonuniform distribution from the overall view of the structure.The nonuniform distribution of the plasma is the key to obtaining ultra-wideband wave absorption.A discrete Epstein distribution model is put forward to constrain the nonuniform electron density of the plasma layers,by which the wave absorption range is extended to the ultra-wideband.Then,the scattering matrix method(SMM) is employed to analyze the electromagnetic reflection and absorption of the absorber structure.In the simulation,the validation of the proposed structure and model in ultra-wideband EM wave absorption is first illustrated by comparing the nonuniform plasma model with the uniform case.Then,the influence of various parameters on the EM wave reflection of the plasma are simulated and analyzed in detail,verifying the EM wave absorption performance of the absorber.The proposed structure and model are expected to be superior in some realistic applications,such as supersonic aircraft.
作者 Xuyang CHEN Fangfang SHEN Yanming LIU Wei AI Xiaoping LI 陈旭阳;沈方芳;刘彦明;艾炜;李小平(School of Aerospace Science and Technology,Xidian University;Science and Technology on Space Physics Laboratory,China Academy of Launch Vehicle Technology)
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2018年第6期78-88,共11页 等离子体科学和技术(英文版)
基金 supported in part by the National Basic Research Program of China (grant no.2014CB340205) in part by the Science and Technology on Space Physics Laboratory Funds in part by the Fundamental Research Funds for the Central Universities (20101156180)
关键词 plasma stealth ultra wideband Epstein profile scattering matrix method(SMM) electromagnetic(EM) wave absorption stable wave absorption plasma stealth ultra wideband Epstein profile scattering matrix method(SMM) electromagnetic(EM) wave absorption stable wave absorption
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