Novel Offset Complementary Split Ring Resonators on Narrow-wall of Waveguides for HPM Applications

Mohammad Saif ur Rehman, Liu Meiqin, Chunliang Liu, E. Schamiloglu
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Abstract

A novel offset Metamaterial-based complementary split-ring resonator (CSRR) and its characteristic behavior on the narrow wall of a rectangular waveguide is considered, for the advancement and implementation of high-power microwave (HPM) antennas, operable at L-Band along with other potential frequencies. The architecture improves the properties of traditional slots and split ring resonators (SRRs) mounted on the narrow wall of selected waveguides (radius= 24mm, thickness=3.5mm, chord=0.8., offset=2.7mm)., with their designated frequency regimes. The inter-spacing and offset tuning of the array elements have core effects on mechanical strength, coupling, phase, radiation efficiency, as well negative index properties. The design supports high tunability for adaptation on other architectures, as well as decent phase consistency with THz prospects.
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用于HPM应用的窄壁波导上的新型偏置互补劈开环谐振器
研究了一种新型偏置超材料互补劈环谐振器(CSRR)及其在矩形波导窄壁上的特性,为l波段及其他可能频率的高功率微波(HPM)天线的发展和实现提供了理论依据。该结构改进了传统狭槽和分裂环谐振器(srr)的性能,这些狭槽和分裂环谐振器安装在选定的波导(半径= 24mm,厚度=3.5mm,弦值=0.8)的窄壁上。,抵消= 2.7毫米)。,以其指定的频率制度。阵元间距和偏置调谐对阵元的机械强度、耦合、相位、辐射效率和负折射率等性能有重要影响。该设计支持适应其他架构的高可调性,以及与太赫兹前景的良好相位一致性。
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