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Gap plasmon-based metasurfaces: From amplitude to phase control of reflected light

机译:基于间隙等离激元的超表面:从反射光的振幅到相位控制

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We demonstrate how metal-insulator-metal configurations, in which the upper metal layer is periodically structured, allow for efficient control of the amplitude and phase of the reflected light, emphasizing the presence of gap-surface plasmon resonances and their connection to the optical response. Furthermore, we discuss applications of inhomogeneous meta-surfaces, ranging from subwavelength plasmonic color printing to unidirectional polarization-controlled excitation of surface plasmon polaritons.
机译:我们演示了周期性地构造上部金属层的金属-绝缘体-金属配置如何有效控制反射光的振幅和相位,强调间隙表面等离子体激元共振的存在及其与光学响应的​​联系。此外,我们讨论了不均匀的元表面的应用,从亚波长等离激元彩色印刷到表面等离激元极化子的单向极化控制激发。

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