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On ohmic losses in frequency-selective surfaces at near-infrared wavelengths.

机译:在近红外波长的频率选择表面中的欧姆损耗。

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摘要

In typical applications of Frequency Selective Surfaces (FSS) at RF frequencies, loss effects in dielectric substrates can be significant, but losses in the metallic elements of the FSS themselves are generally negligible. However, recent attempts to construct bandpass filters from metallic FSS for use at near-infrared frequencies have shown that the dominant loss mechanism in this frequency range is ohmic loss in the metal. Common FSS analysis techniques can include the effects of loss in bandstop filters comprised of electrically conductive wire elements in a dielectric substrate, but calculating the loss in FSS composed of slots in a lossy ground plane can be much more challenging.; This work details the loss in slot FSS at near-infrared wavelengths calculated by a perturbation of the lossless case. The theoretical basis and numerical implementation of this procedure are described. Results for a number of geometries are presented, and a detailed study of two fundamental building blocks, the straight and bent slots, is made. Because it is paramount in understanding the mechanisms for losses and what can be done to minimize them, the current distributions across the FSS are examined in detail for the various geometries. Parametric studies of the array geometries are presented, and the effects of dielectric substrates on the loss properties of the different geometries are studied. Finally, the criteria for designing a low loss bandpass filter are discussed along with an outline for future work.
机译:在射频频率上的频率选择表面(FSS)的典型应用中,介电基片中的损耗影响可能很大,但是FSS本身的金属元素中的损耗通常可以忽略不计。但是,最近尝试从金属FSS构造带通滤波器以用于近红外频率,这表明在该频率范围内主要的损耗机制是金属中的欧姆损耗。常见的FSS分析技术可能包括介电基片中由导电线元件组成的带阻滤波器中损耗的影响,但计算由有损接地平面中的缝隙组成的FSS的损耗可能更具挑战性。这项工作详细介绍了通过无损情况的扰动计算得出的,在近红外波长下时隙FSS中的损耗。描述了该程序的理论基础和数值实现。给出了许多几何的结果,并详细研究了两个基本构件,即直槽和弯曲槽。由于了解损失的机制以及如何使损失最小化至关重要,因此将详细检查各种几何形状的FSS上的电流分布。提出了阵列几何形状的参数研究,并研究了电介质衬底对不同几何形状的损耗特性的影响。最后,讨论了设计低损耗带通滤波器的标准以及未来工作的大纲。

著录项

  • 作者

    Pryor, Jonothan B.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 276 p.
  • 总页数 276
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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