具有非局部双面边界条件的元膜波导的本征模

IF 4.6 1区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Sergey Bankov;Kirill Klionovski
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引用次数: 0

摘要

元膜波导广泛应用于微波、毫米波和太赫兹等领域。在电磁模拟中,等效边界条件表示元膜,便于建模。二阶非局部双面边界条件为大多数元膜提供了足够的建模精度。本文研究了一种由所述边界条件描述的平面元膜波导。结果表明,对于具有非局部边界条件的元膜,传统的波导特征模确定方法不能提供正确的结果。不正确的原因是具有非局部边界条件的元膜的一些不寻常的性质,以及不规则元膜需要满足所谓的边界接触条件,这提供了边界接触问题解的唯一性。提出了一种在非局域双侧边界条件下正确确定开放和屏蔽波导中连续和离散特征模谱的新方法。研究了平行板波导中的不规则元膜。结果表明,修正后的特征模态在不规则点处满足边界接触条件。给出了一些数值结果,证明了所提分析方法的计算精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Eigenmodes of Metafilm Waveguides With Nonlocal Two-Sided Boundary Conditions
Metafilm waveguides are used in broad areas of microwave, millimeter-wave, and terahertz applications. In electromagnetic simulations, equivalent boundary conditions represent metafilms for their easy modeling. Nonlocal two-sided boundary conditions of the second order provide adequate modeling accuracy for most metafilms. This article considers a planar metafilm waveguide described by the indicated boundary conditions. It is demonstrated that the classic approach for waveguide eigenmode determination does not provide correct results when applied to the metafilms with nonlocal boundary conditions. The reasons for the incorrectness are some unusual properties of metafilms with nonlocal boundary conditions and the requirement to satisfy a so-called boundary-contact condition for an irregular metafilm, which provides the uniqueness of a boundary-contact problem solution. A novel approach is introduced for correctly determining continuous and discrete eigenmode spectrums in open and shielded waveguides with nonlocal two-sided boundary conditions. An irregular metafilm in a parallel-plate waveguide is considered. It is demonstrated that using the corrected eigenmodes satisfies the boundary-contact condition at the point of irregularity. Some numerical results are presented, demonstrating the calculating accuracy of the proposed analytical approach.
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来源期刊
CiteScore
10.40
自引率
28.10%
发文量
968
审稿时长
4.7 months
期刊介绍: IEEE Transactions on Antennas and Propagation includes theoretical and experimental advances in antennas, including design and development, and in the propagation of electromagnetic waves, including scattering, diffraction, and interaction with continuous media; and applications pertaining to antennas and propagation, such as remote sensing, applied optics, and millimeter and submillimeter wave techniques
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