典型文献
A novel dual-beam terahertz leaky-wave antenna based on spoof surface plasmon waveguide
文献摘要:
A novel dual-beam terahertz(THz)leaky-wave antenna(LWA)based on triple-periodically(TP)modulated spoof surface plasmon(SSP)waveguide is proposed.It is shown that SSP can be effectively excited and propagated along the surface of parallel corrugated metallic strips.Through proper design,the n=-1 and n=-2 Floquet modes are brought into the leakage radiation region simultaneously.Consequently,the forward and backward propagating waves corresponding to the two modes respectively generate two radiation beams in the far-field region.The proposed an-tenna is capable of steering the forward beam within a range of 34° and the backward beam within a range of 48° when frequency is swept between 0.23 THz and 0.29 THz.A simulated peak gain of 11.4 dBi and gain variation of 2.87 dBi are achieved within the band.The proposed LWA can be applied in THz wireless communication and radar systems.
文献关键词:
中图分类号:
作者姓名:
BAI Yukun;LIU Song
作者机构:
Tianjin Key Laboratory of Film Electronic and Communication Devices,Engineering Research Center of Optoelec-tronic Devices and Communication Technology,Ministry of Education,School of Integrated Circuit Science and En-gineering,Tianjin University of Technology,Tianjin 300384,China
文献出处:
引用格式:
[1]BAI Yukun;LIU Song-.A novel dual-beam terahertz leaky-wave antenna based on spoof surface plasmon waveguide)[J].光电子快报(英文版),2022(07):404-407
A类:
LWA
B类:
novel,dual,terahertz,leaky,antenna,spoof,surface,plasmon,waveguide,THz,triple,periodically,TP,modulated,SSP,is,proposed,It,shown,that,can,effectively,excited,propagated,along,parallel,corrugated,metallic,strips,Through,proper,design,Floquet,modes,are,brought,into,leakage,radiation,region,simultaneously,Consequently,forward,backward,propagating,waves,corresponding,two,respectively,generate,beams,far,field,capable,steering,within,range,when,frequency,swept,between,simulated,peak,gain,dBi,variation,achieved,band,applied,wireless,communication,radar,systems
AB值:
0.558726
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