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Metamaterial fibres for subdiffraction imaging and focusing at terahertz frequencies over optically long distances

机译:用于子衍射成像的超材料纤维,并且在光学长距离上以太赫兹频率聚焦

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摘要

Using conventional materials, the resolution of focusing and imaging devices is limited by diffraction to about half the wavelength of light, as high spatial frequencies do not propagate in isotropic materials. Wire array metamaterials, because of their extreme anisotropy, can beat this limit; however, focusing with these has only been demonstrated up to microwave frequencies and using propagation over a few wavelengths only. Here we show that the principle can be scaled to frequencies orders of magnitudes higher and to considerably longer propagation lengths. We demonstrate imaging through straight and tapered wire arrays operating in the terahertz spectrum, with unprecedented propagation of near field information over hundreds of wavelengths and focusing down to 1/28 of the wavelength with a net increase in power density. Applications could include in vivo terahertz-endoscopes with resolution compatible with imaging individual cells.
机译:使用常规材料,聚焦和成像设备的分辨率受衍射限制在光波长的一半左右,因为高空间频率不会在各向同性材料中传播。线阵列超材料由于其极高的各向异性而可以超过这个极限。然而,仅在微波频率和仅在少数几个波长上传播的情况下,才能证明聚焦于这些信号。在这里,我们表明该原理可以扩展到更高的频率数量级,并且可以扩展到更长的传播长度。我们演示了通过以太赫兹光谱工作的直形和锥形线阵列的成像,在数百个波长上以前所未有的方式传播了近场信息,并在功率密度的净增加下聚焦至波长的1/28。应用可能包括分辨率与单个细胞成像兼容的体内太赫兹内窥镜。

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