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首页> 外文期刊>Applied Physics A: Materials Science & Processing >Sub-wavelength diffraction-free imaging with low-loss metal-dielectric multilayers
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Sub-wavelength diffraction-free imaging with low-loss metal-dielectric multilayers

机译:低损耗金属介电层的亚波长无衍射成像

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摘要

We demonstrate numerically the diffraction-free propagation of sub-wavelength sized optical beams through simple elements built of metal-dielectric multilayers. The proposed metamaterial consists of silver and a high refractive index dielectric, and is designed using the effective medium theory as strongly anisotropic and impedance matched to air. Further it is characterised with the transfer matrix method, and investigated with FDTD. The diffraction-free behaviour is verified by the analysis of FWHM of PSF in the function of the number of periods. Small reflections, small attenuation, and reduced Fabry–Pérot resonances make it a flexible diffraction-free material for arbitrarily shaped optical planar elements with sizes of the order of one wavelength.
机译:我们在数值上证明了通过金属介电多层构建的简单元件的亚波长尺寸光束的无衍射传播。拟议的超材料由银和高折射率电介质组成,并使用有效介质理论进行设计,具有强各向异性和与空气匹配的阻抗。进一步用传递矩阵法进行了表征,并用FDTD进行了研究。通过分析PSF的FWHM随周期数的变化来验证无衍射行为。小反射,小衰减和减小的Fabry-Pérot共振使其成为一种灵活的无衍射材料,适用于任意形状的光学平面元件,其波长约为一个波长。

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