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Anisotropic Periodic Assemblies And Metamaterials For Applications To Antennas And Microwave Devices

机译:应用于天线和微波设备的各向异性周期组件和超材料

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摘要

Basic microwave properties of magnetic photonic (MPC) and degenerate band edge (DBE) crystals are investigated mathematically and experimentally. Two dimensional and three dimensional models are considered demonstrating the very high sensitivity and field growth associated with these crystals. A major part of the paper deals with the development of realistic anisotropic periodic structures using a combination of layers constructed from thin film frequency selective surfaces, alumina, ti-tanate and calcium vanadium garnet (CVG) materials. Measurements for antenna applications demonstrate and validate the theoretical performance of the MPC and DBE crystals. The latter part of the paper will present an exciting and promising development relating to microwave circuit applications. Specifically, a novel dual-line printed circuit is presented to emulate propagation in anisotropic media. As such, the MPC and DBE phenomena can be realized using very simple printed circuits (coupled lines). Lastly, physically small printed antennas and arrays based on the coupled transmission lines are presented.
机译:数学和实验研究了磁光子(MPC)和简并带边缘(DBE)晶体的基本微波特性。二维和三维模型被认为证明了与这些晶体相关的非常高的灵敏度和场生长。本文的主要内容涉及使用由薄膜频率选择表面,氧化铝,钛酸盐和钙钒石榴石(CVG)材料构成的层的组合来开发逼真的各向异性周期性结构。天线应用的测量证明并验证了MPC和DBE晶体的理论性能。本文的后半部分将提出与微波电路应用有关的令人振奋和有希望的发展。具体而言,提出了一种新颖的双线印刷电路来模拟各向异性介质中的传播。这样,可以使用非常简单的印刷电路(耦合线)来实现MPC和DBE现象。最后,介绍了基于耦合传输线的物理小型印刷天线和阵列。

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