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Low-dimensional waveguide microwave photonic crystals

机译:低维波导微波光子晶体

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摘要

Structures containing periodically alternating elements, which are a source of high-order waves, are investigated as low-dimensional waveguide microwave photonic crystals. The band character of the transmittance and the reflectance of a photonic crystal, which consists of sequentially alternating dielectric layers and thin metallic plates partially overlapping the waveguide section, is revealed by the numerical modeling and the experimental investigation of amplitude-frequency characteristics. It has been shown that the application of metallic plates with gaps in the structure of the photonic crystal made it possible to decrease its longitudinal size substantially compared with photonic crystals fabricated based on elements made of alternating dielectric layers with various permittivities.
机译:作为低维波导微波光子晶体,研究了包含周期性交替元素的结构,这些元素是高阶波的来源。通过数值模型和振幅-频率特性的实验研究,揭示了光子晶体的透射率和反射率的能带特征,该光子晶体由依次交替的介电层和部分与波导部分重叠的金属薄板组成。已经表明,与基于由具有各种介电常数的交替介电层制成的元件制造的光子晶体相比,在光子晶体的结构中应用具有间隙的金属板使得可以减小其纵向尺寸。

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