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首页> 外文期刊>Plasmonics >Tunable Triple-Band Plasmonically Induced Transparency Effects Based on Double pi-Shaped Metamaterial Resonators
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Tunable Triple-Band Plasmonically Induced Transparency Effects Based on Double pi-Shaped Metamaterial Resonators

机译:基于双PI形的超材料谐振器的可调谐三频段相位透明度效应

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摘要

Tunable triple-peaks with the transmission intensity of more than 90% plasmonically induced transparency metamaterial resonator based on nested double pi-shaped metallic structure is proposed at the terahertz frequency region, which is consisted of three sets of gold nanorods with different sizes placed on a dielectric substrate of SiO2. The coupling effect of localized electric field between different parts of the proposed structure can be used to explain the physical mechanism of three transparent windows. The finite-difference time-domain (FDTD) is used to study the spectral properties of the proposed structure, and the influence of the size of the nanorods and the relative distance between them on the spectral characteristics are also discussed. It can be seen that some obvious shift phenomena occur in the spectra with the change of these nanorods. These results indicate that the proposed structure opens up new avenues in many related applications, especially for multi-channel filters, optical switches, and sensors.
机译:在太赫兹频率区域提出了基于嵌套双Pi形金属结构的大于90%的相传透明超材料谐振器的可调谐三峰,其由三赫兹频率区域提出,该频率区域由三组具有不同尺寸的金纳米棒组成SiO2的介电基板。所提出的结构的不同部分之间的局部电场的耦合效果可用于解释三个透明窗口的物理机制。还讨论了有限差分时域(FDTD)来研究所提出的结构的光谱特性,并且还讨论了纳米棒的尺寸和在光谱特性上的相对距离的影响。可以看出,随着这些纳米棒的变化,在光谱中发生了一些明显的变化现象。这些结果表明,所提出的结构在许多相关应用中开辟了新的途径,特别是对于多通道滤波器,光开关和传感器。

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