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通过精确控制锗锑碲的相变实现近红外有源法诺共振非对称超表面

Realization of a near-infrared active Fano-resonant asymmetric metasurface by precisely controlling the phase transition of GeSbTe.

作者信息

Zhu Wei, Fan Yuancheng, Li Ce, Yang Ruisheng, Yan Shi, Fu Quanhong, Zhang Fuli, Gu Changzhi, Li Junjie

机构信息

Beijing National Laboratory for Condensed Matter physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China.

出版信息

Nanoscale. 2020 Apr 28;12(16):8758-8767. doi: 10.1039/c9nr09889e. Epub 2020 Feb 24.

Abstract

A metasurface is one of the most effectual platforms for the manipulation of complex optical fields. One of the current challenges in the field is to develop active or reconfigurable functionalities to extend its operation band which is limited by its intrinsic resonant nature. Here we demonstrate a kind of active Fano-resonant asymmetric metasurface in the near-infrared (NIR) region with heterostructures made of a layer of asymmetric split-ring resonators and a thin layer of phase-change material (PCM). In the asymmetric metasurface, significant tunability in the frequency, Q-factor and strength of the Fano resonance are all achieved by precisely controlling the phase transition of the contained PCM GeSbTe (GST), together with changing the geometric asymmetry of the split-ring resonators. Moreover, we provide a complete transition process of the optical properties for GST and an optimized modulation on the active Fano-resonant metasurface. Our approach to dynamically control a Fano-resonant metasurface paves the way to realizing various active photonic meta-devices involving PCM.

摘要

超表面是操纵复杂光场最有效的平台之一。该领域当前的挑战之一是开发有源或可重构功能,以扩展其受固有谐振特性限制的工作频段。在此,我们展示了一种近红外(NIR)区域的有源法诺共振非对称超表面,其异质结构由一层非对称开口环谐振器和一层相变材料(PCM)薄层组成。在该非对称超表面中,通过精确控制所含PCM GeSbTe(GST)的相变,以及改变开口环谐振器的几何不对称性,在法诺共振的频率、品质因数和强度方面均实现了显著的可调谐性。此外,我们提供了GST光学特性的完整转变过程以及对有源法诺共振超表面的优化调制。我们动态控制法诺共振超表面的方法为实现各种涉及PCM的有源光子超器件铺平了道路。

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