首页> 外文会议>Microwave Radar and Wireless Communications (MIKON), 2012 19th International Conference on >Electrodynamical characteristic particularities of waveguides and scattering structures made of modern strong absorptive materials
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Electrodynamical characteristic particularities of waveguides and scattering structures made of modern strong absorptive materials

机译:现代强吸收性材料制成的波导和散射结构的电动力学特性

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Here electrodynamical characteristics of open cylindrical waveguides and cylindrical scatterers made of strong absorptive materials are presented. There are unusual peaks (extremums) on characteristic curves of waveguide and scatterer structures. These electrodynamical characteristics are differ from such ones when the structures are made of lossless or low-loss materials. The complex longitudinal propagation constant of the main mode of open SiC waveguide at the temperature 1800°C and several waveguide radii from 1.6 mm till 3.2 mm are demonstrated here. We see that for some radii of waveguides are extremums of phase and attenuation constants. The extremums'' frequency is dependent on the waveguide radius. The ones are shifted to the low frequency with increasing of radius. We show here dependences of absorbed powers of incident microwave by a multilayered cylinder with a radius 2 mm. The cylinder consists of a conductor core that is coated by the twenty four lossy n-Si semiconductor and acrylic-glass alternative layers. Here is presented characteristics of multilayered cylinder with the external acrylic-glass layer. The dispersion dependency of semiconductor loss is taken into account here. The thickness of all layers as well as the radius of the conductor core are the same and equal to 0.08 mm. We have compared absorbed power dependences on the microwave polarization and the n-Si specific resistivity. We discovered specific dependences of absorbed powers on the parameters.
机译:这里介绍了由强吸收性材料制成的开放式圆柱形波导和圆柱形散射体的电动力特性。波导和散射体结构的特性曲线上有不寻常的峰值(极值)。当结构由无损或低损耗材料制成时,这些电动特性与此类电动特性不同。这里展示了开放式SiC波导在1800°C的温度下主模的复杂纵向传播常数,以及从1.6 mm到3.2 mm的多个波导半径。我们看到,波导的某些半径是相位和衰减常数的极值。极值频率取决于波导半径。随着半径的增加,它们移到低频。我们在这里显示了半径为2 mm的多层圆柱体对入射微波吸收功率的依赖性。圆柱体由一个导体芯组成,该导体芯被二十四个有损n-Si半导体和丙烯酸玻璃替代层所覆盖。这里展示了带有外部丙烯酸玻璃层的多层圆柱体的特性。此处考虑了半导体损耗的色散依赖性。所有层的厚度以及导体芯的半径都相同,并且等于0.08 mm。我们比较了吸收功率对微波极化和n-Si电阻率的依赖性。我们发现了吸收功率对参数的特定依赖性。

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