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Numerical studies of bandwidth of parallel-plate cut-off realised by a bed of nails, corrugations and mushroom-type electromagnetic bandgap for use in gap waveguides

机译:间隙波导中钉床,波纹和蘑菇型电磁带隙对平行板截止带宽的数值研究

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摘要

Recently it has been shown that so-called gap waveguides can be generated in the gap between parallel metal plates. The gap waveguides are formed by metal ridges or strips along which local waves propagate, and parallel plate modes are prohibited from propagating by providing one of the surfaces with a texture that generates an artificial magnetic conductor (AMC) or an electromagnetic bandgap (EBG) surface on both sides of the ridges or strips. The bandwidth of the gap waveguide is determined by the cut-off bandwidth of a parallel-plate waveguide where one surface has such a texture (and no ridges or strips). This paper studies the bandwidths (or stop bands) of such parallel-plate cut-offs when the AMC or EBG is realised by a metal pin surface, corrugations or a mushroom surface. It is shown that cut-off bandwidths of up to 4:1 are potentially available, and thereby similar bandwidths should be achievable also for gap waveguides.
机译:近来已经表明,可以在平行金属板之间的间隙中产生所谓的间隙波导。间隙波导由沿局部波传播的金属脊或条形成,并且通过为其中一个表面提供可产生人造磁导体(AMC)或电磁带隙(EBG)表面的纹理来禁止平行平板模式传播在脊或条的两侧。间隙波导的带宽由平行板波导的截止带宽确定,其中一个表面具有这样的纹理(并且没有脊或条)。本文研究了当AMC或EBG由金属销钉表面,波纹或蘑菇表面实现时,此类平行板截止的带宽(或阻带)。示出了高达4:1的截止带宽是潜在可用的,并且因此对于间隙波导也应当能够实现类似的带宽。

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