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Deep-subwavelength metamaterial resonators operating at dual frequency regions

机译:双频率区域操作的深层超级材料谐振器

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Metamaterials are engineered structures designed to interact with electromagnetic radiation. The common understanding in the scientificcommunity is that, a typical metamaterial operates within a particular frequency range that is determined by the metamaterials’dimensions. In this paper, for the first time to the best of our knowledge, we demonstrate that a metamaterial can be functional in morethan one frequency region. We propose an advanced design that can interact with both THz and near-infrared (NIR) frequenciesconcurrently. Moreover, our novel metamaterial can work independently of the input polarisation in both wavelength regions. Wedesigned and fabricated meander line resonators with 300 nm linewidth distributed over 16.26 μm area and experimentally demonstratea structure that can simultaneously interact with NIR and THz frequencies with a high miniaturisation factor. This dual-band photonicmetamaterials can be used as an advanced device in applications such as sensing, imaging, filtering, modulation, and absorption.
机译:超材料是设计用于与电磁辐射相互作用的工程结构。科学中的共同理解社区是,典型的超材料在由超材料确定的特定频率范围内运行方面。在本文中,首次据我们所知,我们证明了超材料可以在更多的功能比一个频率区域。我们提出了一种先进的设计,可以与THZ和近红外(NIR)频率交互同时。此外,我们的新型超材料可以独立于波长区域中的输入极化。我们设计和制造的曲折线谐振器,300nm线宽分布超过16.26μm区域,并通过实验展示可以与具有高小型化因子同时与NIR和THZ频率交互的结构。这个双频光子超材料可用作应用中的先进器件,例如感测,成像,过滤,调制和吸收。

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