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首页> 外文期刊>IEE Proceedings. Part H >Waveguiding structures employing the solid-state magnetoplasma effect for microwave and millimetre-wave propagation
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Waveguiding structures employing the solid-state magnetoplasma effect for microwave and millimetre-wave propagation

机译:利用固态磁等离子体效应进行微波和毫米波传播的波导结构

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摘要

The behaviour of waveguiding structures loaded with solid-state semiconductors under an external DC magnetic field is considered. The solid-state physical basis for the semiconductor magnetoplasma effect is presented, including carrier transport, Drude model, linearised governing equations and conductivity tensor. The resulting asymmetric anisotropy in the complex-element permittivity tensor can be exploited to generate nonreciprocal propagation. Dynamic numerical methods used to obtain the propagation characteristics of various waveguiding structures, including rectangular, circular and planar (i.e. microstrip, coplanar, slotline and finline) are presented. The frequencies covered extend from about 9 GHz in the microwave regime up through the millimetre, submillimetre and optical regions.
机译:考虑了在外部直流磁场下载有固态半导体的波导结构的行为。提出了半导体磁等离子体效应的固态物理基础,包括载流子传输,Drude模型,线性化控制方程和电导率张量。可以利用复元素介电常数张量中产生的不对称各向异性来生成不可逆传播。提出了用于获得包括矩形,圆形和平面(即微带,共面,缝线和鳍线)在内的各种波导结构的传播特性的动态数值方法。所覆盖的频率在微波范围内从大约9 GHz一直延伸到毫米,亚毫米和光学区域。

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