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Ultra sub-wavelength gigahertz resonator for constructing silicon-substrate metamaterials

机译:用于构建硅衬底超材料的超子波长Gigahertz谐振器

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The insufficient homogeneity of metamaterials is one of the most important factors that plagues their engineering applications. Here, we propose an approach to realize silicon-substrate metamaterials with ultra-subwavelength gigahertz resonators constructed with rolled-up transmission lines. Simulation shows that by employing the Cu damascene process in silicon technology, the homogeneity of the unit cells can be reduced to be smaller than 1/300 of the wavelength. As an experimental verification, we design and fabricate a bulk left-handed material sample based on standard printed circuit board technique. With a normalized periodicity of the unit cells ranging from 1/61 to 1/48 of wavelength, the negative refractive index can be clearly measured in the frequency range between 1.02 and 1.3 GHz.
机译:超材料的均匀性不足是困扰其工程应用的最重要因素之一。在这里,我们提出了一种方法来实现具有用卷起传输线构造的超亚主波长吉格赫兹谐振器的硅衬底超材料。仿真结果表明,通过在硅技术中采用Cu镶嵌过程,单元电池的均匀性可以减小为小于波长的1/300。作为实验验证,我们根据标准印刷电路板技术设计和制造散装左手材料样本。对于从波长的1/61至1/48的单位单元的归一化周期性,可以在1.02和1.3GHz之间的频率范围内清楚地测量负折射率。

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