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利用反射式等离子体超表面进行模拟计算。

Analog computing using reflective plasmonic metasurfaces.

机构信息

Department of Technology and Innovation, University of Southern Denmark , Niels Bohrs Allé 1, DK-5230 Odense M, Denmark.

出版信息

Nano Lett. 2015 Jan 14;15(1):791-7. doi: 10.1021/nl5047297. Epub 2014 Dec 22.

Abstract

Motivated by the recent renewed interest in compact analog computing using light and metasurfaces ( Silva, A. et al. Science 2014 , 343, 160 - 163), we suggest a practical approach to its realization that involves reflective metasurfaces consisting of arrayed gold nanobricks atop a subwavelength-thin dielectric spacer and optically thick gold film, a configuration that supports gap-surface plasmon resonances. Using well-established numerical routines, we demonstrate that these metasurfaces enable independent control of the light phase and amplitude, and design differentiator and integrator metasurfaces featuring realistic system parameters. Proof-of-principle experiments are reported along with the successful realization of a high-quality poor-man's integrator metasurface operating at the wavelength of 800 nm.

摘要

受近期使用光和超表面实现紧凑模拟计算的重新关注的启发(Silva, A. 等人,Science 2014, 343, 160-163),我们提出了一种实现这一目标的实用方法,该方法涉及由亚波长薄介电间隔层和光学厚金膜上排列的金纳米砖组成的反射超表面,这种结构支持间隙-表面等离激元共振。使用成熟的数值例程,我们证明这些超表面能够独立控制光的相位和幅度,并设计具有实际系统参数的微分器和积分器超表面。报告了原理验证实验,并成功实现了工作在 800nm 波长的高质量简易积分器超表面。

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