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Anomalously Weak Scattering in Metal-Semiconductor Multilayer Hyperbolic Metamaterials

机译:金属半导体多层双曲超材料中的异常弱散射

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In contrast to strong plasmonic scattering from metal particles or structures in metal films, we show that patterns of arbitrary shape fabricated out of multilayer hyperbolic metamaterials become invisible within a chosen band of optical frequencies. This is due to anomalously weak scattering when the in-plane permittivity of the multilayer hyperbolic metamaterials is tuned to match with the surrounding medium. This new phenomenon is described theoretically and demonstrated experimentally by optical characterization of various patterns in Au-Si multilayer hyperbolic metamaterials. This anomalously weak scattering is insensitive to pattern sizes, shapes, and incident angles, and has potential applications in scattering cross-section engineering, optical encryption, low-observable conductive probes, and optoelectric devices.
机译:与来自金属颗粒或金属膜中结构的强烈等离激元散射相反,我们表明,由多层双曲线超材料制成的任意形状的图案在选定的光学频率范围内变得不可见。这是由于在调整多层双曲线超材料的面内介电常数使其与周围介质匹配时,异常弱散射所致。通过对Au-Si多层双曲线超材料中的各种图案进行光学表征,从理论上描述了这种新现象,并通过实验证明了这一新现象。这种异常弱的散射对图案大小,形状和入射角不敏感,并且在散射横截面工程,光学加密,低可观察的导电探针和光电设备中具有潜在的应用。

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