方形扇形SSPPs及其在微波滤波器设计中的应用

IF 1.5 4区 物理与天体物理 Q3 PHYSICS, FLUIDS & PLASMAS
Baoping Ren;Wenlong Zhang;Chunhua Qin;Xuehui Guan
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引用次数: 0

摘要

本文提出了一种新型的方形扇形欺骗表面等离子激元(SSPPs),并将其应用于小型化微波滤波器的设计。与矩形SSPPs单元相比,所提出的方形扇形SSPPs单元在相同周期内具有更低的基模(Mode0)渐近频率,可以设计紧凑的SSPPs滤波器。此外,所提出的SSPPs单元的高阶模式的频率范围可以大大缩小,一阶模式(Mode1)的频带接近于Mode0,使得不仅可以使用Mode0设计超宽阻带的低通滤波器,而且可以同时使用Mode0和Mode1设计双带滤波器。首先,基于所提出的双面对称方形扇形sspp的Mode0设计了宽阻带低通滤波器;宽阻带是通过传输sspp和过渡sspp的高阶模式相互交错来实现的。通过调整所提出的SSPPs单元下部的尺寸,得到双面非对称方形扇形SSPPs单元,可以自由调节model1的频率范围。基于双面非对称SSPPs单元,设计了一种双带滤波器。为了验证,制作并测量了设计良好的低通滤波器和双带滤波器。实测结果与仿真结果吻合较好,验证了所提出的结构和设计方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Square Fan-Shaped SSPPs and Its Application in Microwave Filters Design
In this article, a new type of square fan-shaped spoof surface plasmon polaritons (SSPPs) is proposed and applied to design compact microwave filters. Compared with rectangular-shaped SSPPs unit, the proposed square fan-shaped SSPPs unit has the lower asymptotic frequency of the fundamental mode (Mode0) in same periodic, enabling the design of compact SSPPs-based filter. Moreover, the frequency range of the high-order modes of the proposed SSPPs unit can be largely narrowed and the frequency band of the first-order mode (Mode1) approached nearly to Mode0, making it the possible not only in design of lowpass filter with ultrawide stopband by using Mode0 but also the dual-band filter by adopting the Mode0 and Mode1 simultaneously. First, a wide stopband lowpass filter is designed based on the Mode0 of the proposed double-side symmetric square fan-shaped SSPPs. The wide stopband is realized by the mutual stagger of the high-order modes of the transmission SSPPs and the transition SSPPs. By adjusting the size of the lower part of the proposed SSPPs unit, the double-side asymmetric square fan-shaped SSPPs unit is then obtained and the frequency range of the Mode1 can be regulated freely. Based on the double-side asymmetric SSPPs unit, a dual-band filter is designed. For verification, a well-designed lowpass filter and dual-band filter are fabricated and measured. The measured results agree well with the simulations, validating the proposed structure and design method.
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来源期刊
IEEE Transactions on Plasma Science
IEEE Transactions on Plasma Science 物理-物理:流体与等离子体
CiteScore
3.00
自引率
20.00%
发文量
538
审稿时长
3.8 months
期刊介绍: The scope covers all aspects of the theory and application of plasma science. It includes the following areas: magnetohydrodynamics; thermionics and plasma diodes; basic plasma phenomena; gaseous electronics; microwave/plasma interaction; electron, ion, and plasma sources; space plasmas; intense electron and ion beams; laser-plasma interactions; plasma diagnostics; plasma chemistry and processing; solid-state plasmas; plasma heating; plasma for controlled fusion research; high energy density plasmas; industrial/commercial applications of plasma physics; plasma waves and instabilities; and high power microwave and submillimeter wave generation.
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