金属开方形环三维方形晶格中线缺陷EBG平板波导的导模

Hassna Ouassal, L. Roy, J. Shaker, R. Chaharmir
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引用次数: 4

摘要

我们提出了在二维(2D)平板上形成的EBG线缺陷波导的理论研究,该波导由多层金属开方形环(osr)的方形晶格组成。波导是通过减少分层环的尺寸来创建通道区域。我们计算了导模的色散图和本征场分布。结果表明,这些导模在垂直方向上(由于通过平板的约束)和水平方向上(由于通过EBG晶格的约束)被限制在通道波导中。还可以观察到,具有缺陷的层数对应于受限模态的数量。此外,还说明了单导、隙内和宽带模式的工作。这些特性产生了紧凑、宽带和多频带的EBG平板波导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Guided modes of a line-defect EBG slab waveguide in a 3-D square lattice of metallic open square rings
We present theoretical studies on an EBG line-defect waveguide which is formed in a two-dimensional (2D) slab, comprised of a square lattice of multi-layer metallic open square rings (OSRs). The waveguide is created by reducing the size of the layered rings to create a channel area. We compute the dispersion diagrams and the eigenfield distributions of the guided modes. It is shown that these guided modes are confined to the channel waveguide vertically (as a result of confinement via the slab) and horizontally (as a result of confinement by the EBG lattice). Also it is observed that the number of layers having defects corresponds to the number of confined modes. Furthermore, single guided, in-gap and broadband mode operation is illustrated. These characteristics give rise to a compact, broadband and multi-band EBG slab waveguide.
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