A FABRY-PEROT METARESONATOR SUPPORTING TRAPPED-MODE RESONANCES

Q4 Physics and Astronomy Radio Physics and Radio Astronomy Pub Date : 2021-11-24 DOI:10.15407/rpra26.04.344
A. Gribovsky
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Abstract

Purpose: Investigation of the electrodynamic properties of a Fabry-Perot metaresonator formed by two parallel perfectly conducting, two-dimensionally periodic, two-element screens of finite thickness with rectangular holes. The resonator is excited by a plane linearly polarized electromagnetic wave. The basic cell of each of the screens used as the metaresonator mirrors contains two lengths of rectangular waveguides of different transverse sections. Design/methodology/approach: An operator method for solving the 3D problems of electromagnetic wave diffraction by multielement two-dimensionally periodic structures is used in the study. The computation algorithm uses the partial domain technique and the method of generalized scattering matrices. Findings: As follows from the results of the numerical modeling made, the magnitude of the plane wave reflected from the metaresonator turns to zero at fixed frequencies lying below the cutoff frequencies for the rectangular waveguide sections embedded in the resonator mirrors. The effect of the total electromagnetic wave transmission through the metaresonator at the first lower frequency is characterized by a strong localization of the electromagnetic field in the resonator volume. The reason is excitation of the metaresonator by the exponentially descending field penetrating inside the resonator through the evanescent holes at the resonance frequency. The second low-frequency resonance of the total electromagnetic wave transmission through the metaresonator is associated with the trapped-mode resonance, which is observed in multielement two-dimensionally periodic structures. This case is characterized by a strong localization of the electromagnetic field from both sides near the metaresonator mirror surfaces. Conclusions: The unique electrodynamic properties of the metaresonator can find application in the devices for measuring the electrophysical parameters of composite materials with high losses. The effect of strong localization of the electromagnetic field both in the resonator volume and near the mirror surfaces can be used for monitoring the gaseous substances in crowded places. Key words: two-dimensionally periodic screen; rectangular waveguide; Fabry-Perot metaresonator; reflection factor; evanescent waveguide; trapped-mode resonance
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一种支持捕获模谐振的FABRY-PEROT元谐振器
目的:研究由两个具有矩形孔的有限厚度的二维周期性平行完全导电的二元屏幕形成的法布里-珀罗元谐振器的电动力学特性。谐振器由平面线性极化电磁波激励。用作元谐振器反射镜的每个屏幕的基本单元包含两段不同横截面的矩形波导。设计/方法/方法:在研究中使用了一种算子方法来解决多元素二维周期结构的电磁波衍射的三维问题。计算算法采用了偏域技术和广义散射矩阵方法。研究结果:根据所做的数值模拟结果,在嵌入谐振器镜中的矩形波导部分的截止频率以下的固定频率下,从元谐振器反射的平面波的幅度变为零。在第一较低频率下通过元谐振器的总电磁波传输的效果的特征在于电磁场在谐振器体积中的强局部化。原因是在谐振频率下通过倏逝孔穿透谐振器内部的指数下降场对元谐振器的激励。通过元谐振器的总电磁波传输的第二低频谐振与捕获模式谐振有关,捕获模式谐振在多元素二维周期性结构中观察到。这种情况的特征是来自元谐振器镜面附近两侧的电磁场的强局部化。结论:超谐振器独特的电动力学特性可应用于高损耗复合材料电物理参数的测量装置中。电磁场在谐振器体积和镜面附近的强局部化效应可用于监测拥挤场所的气体物质。关键词:二维周期屏;矩形波导;法布里-珀罗元谐振器;反射因子;倏逝波导;陷模谐振
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来源期刊
Radio Physics and Radio Astronomy
Radio Physics and Radio Astronomy Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
0.60
自引率
0.00%
发文量
18
审稿时长
8 weeks
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