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Compact Feeding Network for Array Radiations of Spoof Surface Plasmon Polaritons

机译:用于欺骗表面等离激元极化子的阵列辐射的紧凑式馈电网络

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摘要

We propose a splitter feeding network for array radiations of spoof surface plasmon polaritons (SPPs), which are guided by ultrathin corrugated metallic strips. Based on the coupled mode theory, SPP fields along a single waveguide in a certain frequency range can be readily coupled into two adjacent branch waveguides with the same propagation constants. We propose to load U-shaped particles anti-symmetrically at the ends of such two branch waveguides, showing a high integration degree of the feeding network. By controlling linear phase modulations produced by the U-shaped particle chain, we demonstrate theoretically and experimentally that the SPP fields based on bound modes can be efficiently radiated to far fields in broadside direction. The proposed method shows that the symmetry of electromagnetic field modes can be exploited to the SPP transmission network, providing potential solutions to compact power dividers and combiners for microwave and optical devices and systems.
机译:我们提出了一种分离器馈电网络,用于欺骗性表面等离振子极化子(SPPs)的阵列辐射,该辐射由超薄波纹金属带引导。基于耦合模式理论,可以轻松地将单个波导在某个频率范围内的SPP场耦合到具有相同传播常数的两个相邻分支波导中。我们建议在这两个分支波导的末端反对称地加载U形粒子,这表明馈电网络的集成度很高。通过控制由U形粒子链产生的线性相位调制,我们在理论上和实验上证明了基于束缚模的SPP场可以有效地辐射到宽边方向上的远场。所提出的方法表明,电磁场模式的对称性可以用于SPP传输网络,为微波,光学设备和系统的紧凑型功率分配器和组合器提供了潜在的解决方案。

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