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首页> 外文期刊>Proceedings of the IEEE >Development of Bulk Optical Negative Index Fishnet Metamaterials: Achieving a Low-Loss and Broadband Response Through Coupling
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Development of Bulk Optical Negative Index Fishnet Metamaterials: Achieving a Low-Loss and Broadband Response Through Coupling

机译:光学负折射率鱼网超材料的发展:通过耦合实现低损耗和宽带响应

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In this paper, we discuss the development of a bulk negative refractive index metamaterial made of cascaded “fishnet” structures, with a negative index existing over a broad spectral range. We describe in detail the design of bulk metamaterials, their fabrication and characterization, as well as the mechanism of how coupling of the unit cells can reduce loss in the material through an optical transmission-line approach. Due to the lowered loss, the metamaterial is able to achieve the highest figure of merit to date for an optical negative index metamaterial (NIM) in the absence of gain media. The increased thickness of the metamaterial also allows a direct observation of negative refraction by illuminating a prism made of the material. Such an observation results in an unambiguous demonstration of negative phase evolution of the wave propagating inside the metamaterial. Furthermore, the metamaterial can be readily accessed from free space, making it functional for optical devices. As such, bulk optical metamaterials should open up new prospects for studies of the unique optical effects associated with negative and zero index materials such as the superlens, reversed Doppler effect, backward Cerenkov radiation, optical tunneling devices, compact resonators, and highly directional sources.
机译:在本文中,我们讨论了由级联“鱼网”结构制成的整体负折射率超材料的发展,负折射率存在于很宽的光谱范围内。我们将详细描述块状超材料的设计,其制造和表征,以及通过光传输线方法耦合单元可如何减少材料损耗的机制。由于损耗降低,因此在没有增益介质的情况下,超材料可以实现光学负折射率超材料(NIM)的最高品质因数。超常材料厚度的增加还可以通过照射由该材料制成的棱镜来直接观察负折射。这样的观察结果清楚地表明了超材料内部传播的波的负相位演化。此外,可以轻松地从自由空间访问超材料,从而使其可用于光学设备。因此,块状光学超材料应该为研究与负折射率和零折射率材料相关的独特光学效应开辟新的前景,例如超透镜,反向多普勒效应,反向切伦科夫辐射,光学隧穿装置,紧凑型谐振器和高定向性光源。

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