发现完美电导体和完美磁导体平行板波导界面上的电磁表面波

IF 8.1 1区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Physical review letters Pub Date : 2024-10-30 DOI:10.1103/physrevlett.133.186901
Seong-Han Kim, Chul-Sik Kee
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引用次数: 0

摘要

我们提出了在连接完美电导体(PEC)和完美磁导体(PMC)平行板波导(包含具有正介电常数和正磁导率的材料)所形成的界面上的新电磁表面波。这挑战了表面波需要负介电常数或负磁导率材料的传统认识。理论模式分析和数值模拟证实了 PEC-PMC 接口存在表面波。此外,模拟棱镜耦合实验也验证了 PEC-PMC 界面存在表面波。圆柱体的封闭 PEC-PMC 表面上局部表面波的共振响应也与德鲁德圆柱体的共振响应非常相似。我们的发现拓宽了对电磁表面波产生条件的理解,加深了我们对电磁现象的理解。
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Discovery of Electromagnetic Surface Waves at the Interface between Perfect Electric Conductor and Perfect Magnetic Conductor Parallel-Plate Waveguides
We propose new electromagnetic surface waves at the interface formed by connecting perfect electric conductor (PEC) and perfect magnetic conductor (PMC) parallel plate waveguides containing materials with positive permittivities and permeabilities. This challenges the conventional understanding that surface waves require materials with negative permittivity or permeability. Theoretical mode analysis and numerical simulations have confirmed the existence of surface waves at the PEC-PMC interface. Additionally, a simulated prism coupling experiment validated the excitation of the surface watpdel 1ve at the PEC-PMC interface. The resonant response of the localized surface waves on the enclosed PEC-PMC surface of a cylinder also closely resembles that of a Drude cylinder. Our finding broadens the understanding of the conditions for generating electromagnetic surface waves and deepens our comprehension of electromagnetic phenomena.
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来源期刊
Physical review letters
Physical review letters 物理-物理:综合
CiteScore
16.50
自引率
7.00%
发文量
2673
审稿时长
2.2 months
期刊介绍: Physical review letters(PRL)covers the full range of applied, fundamental, and interdisciplinary physics research topics: General physics, including statistical and quantum mechanics and quantum information Gravitation, astrophysics, and cosmology Elementary particles and fields Nuclear physics Atomic, molecular, and optical physics Nonlinear dynamics, fluid dynamics, and classical optics Plasma and beam physics Condensed matter and materials physics Polymers, soft matter, biological, climate and interdisciplinary physics, including networks
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